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Green Nanotechnology in Nigeria: The Research Landscape, Challenges and Prospects


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Abalaka, M.E., Daniyan, S.Y., Adeyemo, S.O., Damisa, D., 2014, The antibacterial efficacy of gold nanoparticles derived from Gomphrena celosioides and Prunus amygdalus (Almond) leaves on selected bacterial pathogens. International Journal of Biological, Food, Veterinary and Agricultural Engineering, 8: 348-350.Search in Google Scholar

Abid, J.P., Wark, A.W., Brevet, P.F., Girault, H.H., 2002, Preparation of silver nanoparticles in solution from a silver salt by laser irradiation. Chemical Communications, 7: 792-793.10.1039/b200272h12119726Open DOISearch in Google Scholar

Abiodun-Solanke, I.M.F., Ajayi, D.M., Arigbede, A.O., 2014, Nanotechnology and its applicaton in dentstry. Annals of Medical and Health Sciences Research, 4: 171-177.10.4103/2141-9248.141951421237325364585Search in Google Scholar

Abubakar, A.S., Salisu, I.B., Chahal, S., Sahni, S., Pudake, R.N., 2014, Biosynthesis and characterization of silver nanoparticles using black carrot root extract. International Journal of Current Research and Review, 6: 5-8.Search in Google Scholar

Abul-Ezz, A., 2004, Development of scientific concepts and skills and teaching methods. Oman: Dar Thought for Printing, Publishing and Distribution.Search in Google Scholar

Adebayo-Tayo, B.C., Inem, S.A., Olaniyi, O.A., 2019, Rapid synthesis and characterization of gold and silver nanoparticles using exopolysaccharides and metabolites of Wesiella confusa as an antibacterial agent against Esherichia coli. International Journal of Nano Dimension, 10: 37-47.Search in Google Scholar

Adebayo-Tayo, B.C., Popoola, A.O, 2017, Biogenic synthesis and antimicrobial activity of silver nanoparticles using exopolysaccharides from lactic acid bacteria. International Journal of Nano Dimension, 8: 61-69.Search in Google Scholar

Adedokun, O., Roy, A., Awodugba, A.O., Devi, P.S., 2017, Fluorescent carbon nanoparticles from Citrus sinensis as efficient sorbents for pollutant dyes. Luminescence, 32: 62-70.10.1002/bio.314927321808Search in Google Scholar

Adelere, I.A., Lateef, A., 2016a, A novel approach to the green synthesis of metallic nanoparticles: the use of agro-wastes, enzymes and pigments. Nanotechnology Reviews 5: 567-587.10.1515/ntrev-2016-0024Search in Google Scholar

Adelere, I.A., Lateef, A., 2016b, Keratinases: emerging trends in production and applications as novel multifunctional biocatalysts. Kuwait Journal of Science 43 (3): 118-127.Search in Google Scholar

Adelere, I.A., Lateef, A., 2019, Degradation of Keratin Biomass by Different Microorganisms. In: Sharma, S., and Kumar, A. (Eds.). Keratin as a Protein Biopolymer. Springer Series on Polymer and Composite Materials. https://doi.org/10.1007/978-3-030-02901-2_5. Springer International Publishing AG, Cham, Switzerland. ISBN 978-3-030-02900-5. Pp. 123-162.10.1007/978-3-030-02901-2_5.Cham,Switzerland.ISBN978-3-030-02900-5.Pp.123-162Open DOISearch in Google Scholar

Adelere, I.A., Lateef, A., Aboyeji, D.O., Abdulsalam, R., Adabara, N.U., Bala, J.D., 2017, Biosynthesis of silver nanoparticles using aqueous extract of Buchholzia coriacea (wonderful kola) seeds and their antimicrobial activities. Annals Food Science and Technology, 18: 671-679.Search in Google Scholar

Adesuji, E.T., Oluwaniyi, O.O., Adegoke, H.I., Moodley, R., Labulo, A. H., Bodede, O.S., Oseghale, C.O., 2016, Investigation of the larvicidal potential of silver nanoparticles against Culex quinquefasciatus: A case of a ubiquitous weed as a useful bioresource. Journal of Nanomaterials, Article ID 4363751. http://dx.doi.org/10.1155/2016/4363751.10.1155/2016/4363751Open DOISearch in Google Scholar

Adesuji, E.T., Emeka, E.E., Aleruchi, C., Hassan, L.A., Christiana, O.M., Ojiefoh, O.C., Rebecca, M. Olugbenga, D., 2013, Synthesis of silver nanoparticles using some alcoholic beverages from Nigeria market. International Journal of Nano and Material Science, 2: 25-35.Search in Google Scholar

Adewoye S.O., Adewoye A.O., Opasola O.A., Elegbede J.A., 2013, Physicochemical parameters and heavy metal analyses of water samples from hand dug wells in Gambari, Ogbomoso, Oyo State. IOSR Journal of Environmental Science, Toxicology and Food Technology, 5: 22-30.10.9790/2402-0512230Search in Google Scholar

Adewoye, S.O., Lateef, A., 2004, Assessment of the microbiological quality of Clarias gariepinus exposed to an industrial effluent in Nigeria. The Environmentalist (now Environment Systems and Decisions), 24: 249-254.10.1007/s10669-005-1000-7Open DOISearch in Google Scholar

Adeyemi, T.O., 2011, Financing of education in Nigeria: An analytical review. American Journal of Social and Management Sciences, 2: 295-303.10.5251/ajsms.2011.2.3.295.303Search in Google Scholar

Agharkar, M., Kochrekar, S., Hidouri, S., Azeez, M.A., 2014, Trends in green reduction of graphene oxides, issues and challenges: A review. Materials Research Bulletin 59: 323-328.10.1016/j.materresbull.2014.07.051Search in Google Scholar

Ahmed, T.O., Akusu, P.O., Alu, N., Abdullahi, M.B., 2013, Dye-sensitized solar cell (DSC) based on titania nanoparticles and Hibiscus sabdariffa. British Journal of Applied Science and Technology, 3: 840-846.10.9734/BJAST/2013/2538Search in Google Scholar

Aina, D.A., Owolo, O., Adeoye-Isijola, M., Olukanni, O.D., Lateef, A., Okon, V., Aina, F.O., Elegbede, J.A., Asafa, T.B., Abbas, S.H., 2019, Biomedical applications of Chasmanthera dependens stem extract mediated silver nanoparticles as antimicrobial, antioxidant, anticoagulant, thrombolytic, and larvicidal agents. Karbala International Journal of Modern Science, 5: 71-80.10.33640/2405-609X.1018Search in Google Scholar

Ajayi, I.A., Raji, A.A., Ogunkunle, E.O., 2015), Green synthesis of silver nanoparticles from seed extracts of Cyperus esculentus and Butyrospermum paradoxum. IOSR Journal of Pharmacy and Biological Sciences, 10: 76-90.Search in Google Scholar

Ajayi, O.O., Omowa, O.F., Omotosho, O.A., Abioye, O.P., Akinlabi, E.T., Akinlabi, S.A., Abioye, A.A., Owoeye, F.T., Afolalu, S.A., 2018, Experimental investigation of the effect of ZnO-Citrus sinensis nano-additive on the electrokinetic deposition of zinc on mild steel in acid chloride. In: TMS 2018 147th Annual Meeting and Exhibition Supplemental Proceedings, Pp. 35-40. Springer, Cham. https://doi.org/10.1007/978-3-319-72526-0.10.1007/978-3-319-72526-0Open DOISearch in Google Scholar

Akinsiku, A.A, Ajanaku, K.O., Adekoya, J.A., Dare, E.O., 2015, Green synthesis, characterization of silver nanoparticles using Canna indica and Senna occidentalis leaf extracts. International Conference on African Development Issues (CU-ICADI). Materials Technology Track Pp.154-157.Search in Google Scholar

Akinsiku, A.A., Dare, E.O., Ajanaku, K.O., Ajani, O.O., Olugbuyiro, J.A.O., Siyanbola, T.O., Ejilude, O., Emetere, M.E., 2018, Modeling and synthesis of Ag and Ag/Ni allied bimetallic nanoparticles by green method: optical and biological properties. International Journal of Biomaterials, Article ID 9658080. https://doi.org/10.1155/2018/9658080.10.1155/2018/9658080581784629511380Open DOISearch in Google Scholar

Akinsipo, O. B., Ayinde, W. B., Alayande, S. O., Ogunbayo, B. J., Oladoyinbo, F. O., Dare, E. O., Aiyedun, P.O., 2016b, Functionalized chitosan-magnetite nanoparticles for in-vitro controlled drug delivery. Journal of Chemical Society of Nigeria, 41: 1-5.Search in Google Scholar

Akinsipo, O.B., Alayande, S.O., Olasode, S.O., Kayode, F.C., 2016a, Green synthesis of photocatalyst for degradation of dyes. Proceedings of the 2nd Interdisciplinary Conference of TASUED-UCC 2016. 22nd August, 2016 – 25th August, 2016 at Tai Solarin University of Education, Nigeria, Pp. 280-292.Search in Google Scholar

Akolade, J.O., Etuk-Udo, G.A., Dozie-Nwachukwu, S.O., Olalekan, D.O., Anuku, N., Uzomah, A., Odusanya, O.S., 2012, Phyto-synthesis of silver nanoparticles and their applications to bioactive products development. Environmental Research Journal, 6: 135-139.Search in Google Scholar

Akpan, P.U., 2014. Nanotechnology status in Africa (1995-2011): A Scientometric sssessment. Proceedings of the 1st African International Conference/Workshop on Applications of Nanotechnology to Energy, Health and Environment, UNN, March 23 – 29, 2014, Pp. 202-210.Search in Google Scholar

Alayande, S.O., Adeseluka, T.V., Odewumi, B.J., Torimiro, N., Daramola, O.B., Sodeinde, K., Ighodaro, O.M., Ofudje, E.A., Ajao, J.A., 2019, Evaluation of microbial inhibition properties of green and chemically synthesized ZnO nanoparticles. Bulletin of Materials Science, 42: 101.10.1007/s12034-019-1761-0Open DOISearch in Google Scholar

Alo, B., 2013, Nanotechnology in a developing country – application and challenges. https://www.who.int/ifcs/documents/forums/forum6/ppt_nano_alo.pdf?ua=1. (Accessed 14 April, 2019).10.1504/IJEWM.2019.10021172Search in Google Scholar

Amaghionyeodiwe, L.A., Osinubi, T.S., 2007, Do higher levels of schooling lead to higher returns to education in Nigeria? Applied Econometrics and International Development, 7-1: 157-164.Search in Google Scholar

Amaghionyeodiwe, L.A., Osinubi, T.S., 2006, The Nigerian educational system and returns to education. International Journal of Applied Econometrics and Quantitative Studies 3-1: 31-40.Search in Google Scholar

Ashishie, P.B., Anyama, C.A., Ayi, A.A., Oseghale, C.O., Adesuji, E.T., Labulo, A.H., 2018, Green synthesis of silver monometallic and copper-silver bimetallic nanoparticles using Kigelia africana fruit extract and evaluation of their antimicrobial activities. International Journal of Physical Sciences, 13: 24-32.10.5897/IJPS2017.4689Search in Google Scholar

Avoseh, O.N., Oyedeji, O.O., Aremu, O., Nkeh-Chungag, B.N., Songca, S.P., Oyedeji, A.O., Mohan, S., Oluwafemi, O.S., 2017, Biosynthesis of silver nanoparticles from Acacia mearnsii De Wild stem bark and its antinociceptive properties. Green Chemistry Letters and Reviews, 10: 59-68.10.1080/17518253.2017.1287310Search in Google Scholar

Azeez, L., Adejumo, A.L., Lateef, A., Adebisi, S.A., Adetoro, R.O., Adewuyi, S., Tijani, K.O., Olaoye, S., 2019c., Zero-valent silver nanoparticles attenuate Cd and Pb toxicities on Moringa oleifera via immobilization and induction of phytochemicals. Plant Physiology and Biochemistry, 139: 283-292.10.1016/j.plaphy.2019.03.03030925438Search in Google Scholar

Azeez, L., Lateef, A., Adebisi, S.A., 2017, Silver nanoparticles (AgNPs) biosynthesized using pod extract of Cola nitida enhances antioxidant activity and phytochemical composition of Amaranthus caudatus Linn. Applied Nanoscience, 7: 59-66.10.1007/s13204-017-0546-2Search in Google Scholar

Azeez, L., Lateef, A., Wahab, A.A., Adejumo, A.L., Raji, K., 2019b, Comparative effects of silver nanoparticles, sucrose and sodium chloride as osmotic solutions for tomato slices: antioxidant activity, microbial quality and modelling with polynomial regression model. South African Journal of Chemistry, 72: 21-31.10.17159/0379-4350/2019/v72a4Open DOISearch in Google Scholar

Azeez, L., Lateef, A., Wahab, A.A., Rufai, M.A., Salau, A.K., Ajayi, I.O., Ajayi, E.M., Maryam, A.K., Adebisi, B., 2019a, Phytomodulatory effects of silver nanoparticles on Corchorus olitorius: its antiphytopathogenic and hepatoprotective potentials. Plant Physiology and Biochemistry 136: 109-117.10.1016/j.plaphy.2018.12.00630660676Search in Google Scholar

Azeez, M.A., Lateef, A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Gueguim-Kana, E.B., Beukes, L.S., 2017, Biomedical applications of cocoa bean extract-mediated silver nanoparticles as antimicrobial, larvicidal and anticoagulant agents. Journal of Cluster Science, 28: 149-164.10.1007/s10876-016-1055-2Open DOISearch in Google Scholar

Bakare, A.A., Lateef, A., Amuda, O.S., Afolabi, R.O., 2003, The aquatic toxicity and characterization of chemical and microbiological constituents of water samples from Oba River, Odo-Oba, Nigeria. Asian Journal of Microbiology, Biotechnology and Environmental Sciences, 5: 11-17.Search in Google Scholar

Bankole, M.T., Jimoh, O.T., Mohammed, I.A., AbdulKareem, A.S., 2014, A review on nanotechnology as a tool of change in Nigeria. Scientific Research and Essays, 9: 213-223.10.5897/SRE2013.5704Search in Google Scholar

Bankole, O.M., 2018, Phytochemical and antimicrobial studies of colloidal silver nanoparticles mediated by Laportea aestuans extract. International Journal of Biomedical Engineering and Clinical Science, 4: 58-65.10.11648/j.ijbecs.20180402.15Open DOISearch in Google Scholar

Barminas, J.T., Onen, A.I., Musa, Y., 2014, Synthesis and characterization of silver colloidal particles of Ageratum conyzoides L. plant extracts. American Chemical Science Journal, 4: 504-515.10.9734/ACSJ/2014/6810Search in Google Scholar

Batta, H., Ashong, C., Obot, C., 2014, Science, Nano-Science and Nano-Technology Content in Nigeria’s Elite and Popular Press: Focus on Framing and Socio-political Involvement. New Media and Mass Communication, 31: 9-19.Search in Google Scholar

Bello, B.A., Khan, S.A., Khan, J.A., Syed, F.Q., Mirza, M.B., Shah, L., Khan, S.B. (2017). Anticancer, antibacterial and pollutant degradation potential of silver nanoparticles from Hyphaene thebaica. Biochemical and Biophysical Research Communications, 490: 889-894.Search in Google Scholar

Bogoro, S.E., 2015, Sustainability of higher education institutions in Nigeria: challenges and prospects. Being a paper presented at TETFund, Abuja, Nigeria.Search in Google Scholar

Bonazzi, M., von Bose, H., Tokamanis, C., 2010, Communicating nanotechnology: Why, to whom, saying what and how? European Commission: Brussels, 188p.Search in Google Scholar

Botha, T.L., Elemike, E.E., Horn, S., Onwudiwe, D.C., Giesy, J.P., Wepener, V., 2019, Cytotoxicity of Ag, Au and Ag-Au bimetallic nanoparticles prepared using golden rod (Solidago canadensis) plant extract. Scientific Reports, 9: 4169.3086280310.1038/s41598-019-40816-y641461530862803Search in Google Scholar

Boyo, A.O., Boyo, H.O., Abdulsalami, I.O., Adeola, S., 2012, Dye sensitized nanocrystalline titania solar cell using laali stem bark (Lawsonia inermis). Transnational Journal of Science and Technology, 2: 60-72.Search in Google Scholar

Boyo, A., Paul, O., Abdulsalami, I., Surukite, O., Boyo, H.O., Boyo, H., 2013, Application of Hibiscus Sabdariffa and leaves of Azardirachta indica calyxes as sensitizers in Dye-sensitized solar cells. International Journal of Engineering Research and Development, 8: 38-42.Search in Google Scholar

Braun, R.M., Cheng, J., Parsonage, E.E., Moeller, J., Winograd, N., 2006, Surface and depth profiling investigation of a drug-loaded copolymer utilized to coat Taxus Express2 stents. Analytical Chemistry, 78: 8347-8353.10.1021/ac061508917165826Open DOISearch in Google Scholar

Chiguvare, H., Oyedeji, O., Matewu, R., Aremu, O., Oyemitan, I., Oyedeji, A., Nkeh-Chungag, B., Songca, S., Mohan, S. Oluwafemi, O., 2016, Synthesis of silver nanoparticles using Buchu plant extracts and their analgesic properties. Molecules, 21: 774.10.3390/molecules21060774627298527314316Open DOISearch in Google Scholar

City Mirror News, 2017, Despite varsity closure, LAUTECH set to lead Nigeria in nanotechnology. http://citymirrornews.com/topnews/2017/18/despite-varsity-closure-lautech-set-to-leadnigeria-in-nanotechnology/ (Accessed 18 July, 2017).Search in Google Scholar

Cooper, A.F. Antkiewicz, A., Shaw, T.M., 2007, Lessons from/for BRICSAM about South-North relations at the start of the 21st century: Economic size Trumps All Else? International studies Review, 9(4): 675-687.10.1111/j.1468-2486.2007.00730.xSearch in Google Scholar

City Voice Nigeria, 2018, Science minister indicates govt support for nanotechnology at LAUTECH 2018.http://cityvoiceng.com/science-minister-indicates-govt-supportfor-nanotechnology-at-lautech-2018/ (Accessed 30 October, 2018).Search in Google Scholar

Dada, A.O., Inyinbor, A.A., Idu, E.I., Bello, O.M., Oluyori, A.P., Adelani-Akande, T.A., Okunola, A.A., Dada, O., 2018, Effect of operational parameters, characterization and antibacterial studies of green synthesis of silver nanoparticles using Tithonia diversifolia. PeerJ, 6: e5865. https://doi.org/10.7717/peerj.5865.10.7717/peerj.5865621422630397553Open DOISearch in Google Scholar

Dare, E.O., Oseghale, C.O., Labulo, A.H., Adesuji, E.T., Elemike, E.E., Onwuka, J.C., Bamgbose, J.T., 2015, Green synthesis and growth kinetics of nanosilver under bio-diversified plant extracts influence. Journal of Nanostructure in Chemistry, 5: 85-94.10.1007/s40097-014-0139-5Search in Google Scholar

Deshi, J.J., Barminas, J.T., Onwuka, J.C., Dass, P.M., Maitera, O.N., Muazu, I., 2016, Antimicrobial efficacy of biosynthesized silver nanoparticles from different solvent extracts of Waltheria americana root. Journal of Analytical Science and Technology, 7: 23.10.1186/s40543-016-0104-7Search in Google Scholar

Daily Independent, 2018, Minister tasks researchers, institutes on product-centered studies. Daily Independent, Lagos, Nigeria, Nov. 19, 2018; pg. 5. https://www.independent.ng/minister-tasksresearchers-institutes-on-product-centered-studies/ (Accessed 19 November, 2018).Search in Google Scholar

Dozie-Nwachukwu, S.O., Obayemi, J.D., Danyuo, Y., Anuku, N., Odusanya, O.S., Malatesta, K., Soboyejo, W.O., 2017, A comparative study of the adhesion of biosynthesized gold and conjugated gold/prodigiosin nanoparticles to triple negative breast cancer cells. Journal of Materials Science: Materials in Medicine, 28: 143.10.1007/s10856-017-5943-228819929Open DOISearch in Google Scholar

Dozie-Nwachukwu, S.O., Etuk-Udo, G., Obayemi, J.D., Anuku, N., Odusanya, O.S., Malatesta, K., Chi, C., Soboyejo, W.O., 2016a, Biosynthesis of gold nanoparticles from Nauclea latifolia leaves. Advanced Materials Research, 1132: 36-50.10.4028/www.scientific.net/AMR.1132.36Search in Google Scholar

Dozie-Nwachukwu, S.O., Obayemi, J.D., Danyuo, Y.T., Etuk-Udo, G., Chi, Y., Hu, J., Anuku, N., Odusanya, O.S., Malatesta, K., Soboyejo, W.O., 2017a, Biosynthesis of gold nanoparticles and gold/prodigiosin nanoparticles with Serratia marcescens bacteria. Waste and Biomass Valorization, 8: 2045-2059.10.1007/s12649-016-9734-7Search in Google Scholar

Dozie-Nwachukwu, S.O., Obayemi, J.D., Danyo, Y., Etuk-Udo, G., Anuku, N., Odusanya, O.S., Malatesta, K., Chi, C., Soboyejo, W.O., 2016b, Biosynthesis of gold nanoparticles with Serratia marcescens bacteria. Advanced Materials Research, 1132: 19-35.10.4028/www.scientific.net/AMR.1132.19Search in Google Scholar

Elegbede, J.A., Lateef, A., 2019, Green synthesis of silver (Ag), gold (Au) and silver-gold (Ag-Au) alloy nanoparticles: a review on recent advances, trends, and biomedical applications. In: Nanotechnology and nanomaterial applications in food, health and biomedical sciences (Eds: Verma, D.K. et al.). Apple Academic Press, Ontario, Canada. ISBN: 9781771887649. Pp. 3-89.10.1201/9780429425660-1Search in Google Scholar

Elegbede, J.A., Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Oladipo, I.C., Adebayo, E.A., Beukes, L.S., Gueguim-Kana, E.B., 2018a, Fungal xylanases-mediated synthesis of silver nanoparticles for catalytic and biomedical applications. IET Nanobiotechnology, 12: 857-863.3010446310.1049/iet-nbt.2017.0299867643930104463Search in Google Scholar

Elegbede, J.A., Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Oladipo, I.C., Aina, D.A., Beukes, L.S., Gueguim-Kana, E.B., 2018, Biofabrication of gold nanoparticles using xylanases through valorization of corncob by Aspergillus niger and Trichoderma longibrachiatum: antimicrobial, antioxidant, anticoagulant and thrombolytic activities. Waste and Biomass Valorization, https://doi.org/10.1007/s12649-018-0540-2.10.1007/s12649-018-0540-2Open DOISearch in Google Scholar

Elegbede, J.A., Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Oladipo, I.C., Abbas, S.H., Beukes, L.S., Gueguim-Kana, E.B., 2019, Silver-gold alloy nanoparticles biofabricated by fungal xylanases exhibited potent biomedical and catalytic activities. Biotechnology Progress, https://doi.org/10.1002/btpr.2829.10.1002/btpr.282931050163Open DOISearch in Google Scholar

Elemike, E. E., Onwudiwe, D.C., Mkhize, Z., 2016b, Eco-friendly synthesis of AgNPs using Verbascum thapsus extract and its photocatalytic activity. Materials Letters, 185: 452-455.10.1016/j.matlet.2016.09.026Search in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Ekennia, A.C., Jordaan, A., 2018b, Synthesis and characterisation of silver nanoparticles using leaf extract of Artemisia afra and their in vitro antimicrobial and antioxidant activities. IET Nanobiotechnology, 12: 722-726.10.1049/iet-nbt.2017.0297867606230104444Open DOISearch in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Ekennia, A.C., and Katata-Seru, L., 2017b, Biosynthesis, characterization, and antimicrobial effect of silver nanoparticles obtained using Lavandula × intermedia. Research on Chemical Intermediates, 43: 1383-1394.10.1007/s11164-016-2704-7Open DOISearch in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Fayemi, O.E., Ekennia, A.C., Ebenso, E.E., Tiedt, L.R., 2017c, Biosynthesis, electrochemical, antimicrobial and antioxidant studies of silver nanoparticles mediated by Talinum triangulare aqueous leaf extract. Journal of Cluster Science, 28: 309-330.10.1007/s10876-016-1087-7Open DOISearch in Google Scholar

Elemike, E.E., Dare, E.O., Samuel, I.D., Onwuka, J.C., 2016a, 2-Imino-(3, 4-dimethoxybenzyl) ethanesulfonic acid Schiff base anchored silver nanocomplex mediated by sugarcane juice and their antibacterial activities. Journal of Applied Research and Technology, 14: 38-46.10.1016/j.jart.2015.12.001Open DOISearch in Google Scholar

Elemike, E.E., Fayemi, O.E., Ekennia, A.C., Onwudiwe, D.C., Ebenso, E.E., 2017d, Silver nanoparticles mediated by Costus afer leaf extract: Synthesis, antibacterial, antioxidant and electrochemical properties. Molecules, 22: 701.10.3390/molecules22050701615453628468278Open DOISearch in Google Scholar

Elemike, E.E., Ogbe, M.A., Onwudiwe, D.C., Ayeni, M.B., Mgbemena, C.O., 2018a, Kinetics of fresh and fermented palm wine (Raphia hookeri) biosynthesized silver nanoparticles and their antibacterial activities. Journal of the Chinese Advanced Materials Society, 6: 17-29.10.1080/22243682.2017.1383183Open DOISearch in Google Scholar

Elemike, E.E., Ojiefoh, O.C., Aleruchi, C., Hassan, L.A., Christiana, O.M., Rebecca, M., Dare, E.O., Temitope, A.E., 2014, Evaluation of antibacterial activities of silver nanoparticles green-synthesized using pineapple leaf (Ananas comosus). Micron, 57: 1-5.10.1016/j.micron.2013.09.00324268599Search in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Abiola, O.K., Ibe, K.A., 2018c, Surface characterisation and reaction kinetics of silver nanoparticles mediated by the leaf and flower extracts of French marigold (Tagetes patula). IET Nanobiotechnology, 12: 957-962.10.1049/iet-nbt.2017.031630247137867648530247137Open DOISearch in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Arijeh, O., Nwankwo, H.U., 2017a, Plantmediated biosynthesis of silver nanoparticles by leaf extracts of Lasienthra africanum and a study of the influence of kinetic parameters. Bulletin of Materials Science, 40: 129-137.10.1007/s12034-017-1362-8Open DOISearch in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Ekennia, A.C., Ehiri, R.C., Nnaji, N.J., 2017f, Phytosynthesis of silver nanoparticles using aqueous leaf extracts of Lippia citriodora: Antimicrobial, larvicidal and photocatalytic evaluations. Materials Science and Engineering: C, 75: 980-989.10.1016/j.msec.2017.02.161Open DOISearch in Google Scholar

Elemike, E.E., Onwudiwe, D.C., Ekennia, A.C., Sonde, C. U., Ehiri, R.C., 2017e, Green synthesis of Ag/Ag2O nanoparticles using aqueous leaf extract of Eupatorium odoratum and its antimicrobial and mosquito larvicidal activities. Molecules, 22: 674.10.3390/molecules22050674Open DOISearch in Google Scholar

Eli, D., Onimisi, M.Y., Abdu, S.G., Jonathan, E., Yakubu, S.O., 2016b, Photoelectric characterization of a dye-sensitized solar cell based on natural pigment extracted from roselle (Hibiscus sabdariffa) flower and TiO2 nanoparticles. British Journal of Applied Science & Technology, 15: 1-6.10.9734/BJAST/2016/24437Search in Google Scholar

Eli, D., Onimisi, M.Y., Abdu, S.G., Gyuk, P.M., Jonathan, E., 2016a, Enhanced performance of a dye sensitized solar cell using silver nanoparticles modified photoanode. Journal of Scientific Research and Reports, 10: 1-8.10.9734/JSRR/2016/24439Search in Google Scholar

Eli, D., Owolabi, J.A., Olowomofe, G.O., Onimisi, M.Y., Francis, A., 2016c, Enhancement in photovoltaic parameters of a dye sensitized solar cell by surface plasmon resonance of metallic silver nanoparticles. American Chemical Science Journal, 14: 1-8.10.9734/ACSJ/2016/25888Search in Google Scholar

Eze, S.C., Umeh, S.I., Onyeke, C.C., Ameh, G.I., Ugwuoke, K.I., 2016a, Preliminary investigations on the control of yam (Dioscorea rotundata Poir) tuber rot through nanoscience. Nanotechnology Reviews, 5: 499-505.10.1515/ntrev-2016-0027Search in Google Scholar

Eze, S.C., Aruah B.C., Aba S.C., Chukwurah F., 2016b, Varietal responses to storage treatment with nanobiotechnology for reduction of postharvest losses of fresh yam (Dioscorea spp) tuber. International Journal of Science, Environment and Technology, 5: 267-276.Search in Google Scholar

Ezealisiji, K.M., Siwe-Noundou, X., Maduelosi, B., Nwachukwu, N., Krause, R.W.M., 2019, Green synthesis of zinc oxide nanoparticles using Solanum torvum (L) leaf extract and evaluation of the toxicological profile of the ZnO nanoparticles–hydrogel composite in Wistar albino rats. International Nano Letters, 9: 99-107.10.1007/s40089-018-0263-1Open DOISearch in Google Scholar

Ezema, I.C., Ogbobe, P.O., Omah, A.D., 2014, Initiatives and strategies for development of nanotechnology in nations: a lesson for Africa and other least developed countries. Nanoscale Research Letters, 9:133.10.1186/1556-276X-9-133Open DOISearch in Google Scholar

Gamez, G., Gardea-Torresdey, J. L., Tiemann, K. J., Parsons, J., Dokken, K., Yacaman, M. J., 2003, Recovery of gold (III) from multielemental solutions by alfalfa biomass. Advances in Environmental Research, 7: 563-571.10.1016/S1093-0191(02)00021-7Open DOISearch in Google Scholar

Guardian, 2018a, Improved research funding critical to raising education standard – Researchers. The Guardian, Rutam House, Lagos, Nigeria, Oct. 21, 2018; pg. 5.https://guardian.ng/news/improved-research-funding-criticalto-raising-education-standard-researchers/ (Accessed 21 October, 2018).Search in Google Scholar

Guardian, 2018b, Minister urges increased research in nanotechnology. The Guardian, Rutam House, Lagos, Nigeria, Nov. 4, 2018; pg. 7. https://guardian.ng/technology/minister-urgesincreased-research-in-nanotechnology/ (Accessed 4 November, 2018).Search in Google Scholar

Guardian, 2018c, UNN holds third biennial nanotechnology conference. https://guardian.ng/news/unn-hosts-third-biennialafrican-nanotechnology-conference/ (Accessed on 17 August, 2019).Search in Google Scholar

Hampp, E., Botah, R., Odusanya, O.S., Anuku, N, Malatesta, K.A., Soboyejo, W.O., 2012, Biosynthesis and adhesion of gold nanoparticles for breast cancer detection and treatment. Journal of Material Research, 27: 2891-2901.10.1557/jmr.2012.317Search in Google Scholar

Huang, H., Yang, X., 2004, Synthesis of polysaccharide-stabilized gold and silver nanoparticles: a green method. Carbohydrate Research, 339: 2627-2631.10.1016/j.carres.2004.08.00515476726Search in Google Scholar

Ibrahim, M.B., Abdullahi, S.H., 2017, Green synthesis of zinc nanoparticles using Ipomoea asarifolia leaves extract and its adsorption properties for the removal of dyes. Bayero Journal of Pure and Applied Sciences, 10: 7-14.10.4314/bajopas.v10i1.2SSearch in Google Scholar

Ingelsten, H.H., Bagwe, R., Palmqvist, A., Skoglundh, M., Svanberg, C., Holmberg, K., Shah, D.O., 2001, Kinetics of the formation of nanosized platinum particles in water-in-oil microemulsions. Journal of Colloid and Interface Science, 241: 104-111.10.1006/jcis.2001.774711502113Search in Google Scholar

Ituen, E., Mkpenie, V., Ekemini, V.M.E., 2019, Adsorptive Fenanoparticles mediated by Musa sapientum peels extract as anticorrosion additive for aqueous oilfield descaling solution. Scientific African, 3: e00075.10.1016/j.sciaf.2019.e00075Search in Google Scholar

Jackson, T.C., Uwah, T.O.O., Agboke, A.A., Udo, B.E., Udofa, E.M., 2018, Eco-friendly synthesis of silver nano particles using Carica papaya leaf extract. Soft Nanoscience Letters, 8: 1-7.10.4236/snl.2018.81001Search in Google Scholar

Jackson, T.C., Uwah, T.O., Ifekpolugo, N.L., Emmanuel, N.A., 2018, Comparison of antimicrobial activities of silver nanoparticles biosynthesized from some Citrus species. American Journal of Nano Research and Applications, 6: 54-59.10.11648/j.nano.20180602.12Open DOISearch in Google Scholar

Jackson, T.C., Patani, B.O., Udosen, N.N., 2018, Surface plasmon resonance and antimicrobial properties of novel silver nanoparticles prepared from some indigenous plants in Uyo, Nigeria. African Journal of Biotechnology, 17: 748-752.10.5897/AJB2017.16119Open DOISearch in Google Scholar

Jaja, J.M., 2014, Higher education in Nigeria: Its gain, its burden. Global Journal of Human-Social Science Research, 13: 21-29.Search in Google Scholar

Johnson, AS., Obot, I.B., Ukpong, U.S., 2014, Green synthesis of silver nanoparticles using Artemisia annua and Sida acuta leaves extract and their antimicrobial, antioxidant and corrosion inhibition potentials. Journal of Material and Environmental Science, 5: 899-906.Search in Google Scholar

Jonathan, J., Oluwafemi, O., Ronke, O., Samuel, O., Jesse, O., 2018, Hura crepitans seed mediated biosynthesis of silver nanoparticles, characterization and its antimicrobial activity against microorganism. Journal of Bionanoscience, 12: 614-620.10.1166/jbns.2018.1569Search in Google Scholar

Kallamu, U.M., 2013, Understanding nanotechnology and nanoscience for national development. Academic Journal of Interdisciplinary Studies, 2: 103-110.10.5901/ajis.2013.v2n13p103Search in Google Scholar

Kareem, S.O., Adebayo, O.S., Balogun, S.A., Adeogun, A.I., Akinde, S.B., 2017, Purification and characterization of lipase from Aspergillus flavus pw 2961 using magnetic nanoparticles. Nigerian Journal of Biotechnology, 32: 77-82.10.4314/njb.v32i1.11Search in Google Scholar

Khan, S.A., Bello, B.A., Khan, J.A., Anwar, Y., Mirza, M.B., Qadri, F., Farooq, A., Adam, I.K., Asiri, A.M., Khan, S.B., 2018, Albizia chevalier based Ag nanoparticles: Anti-proliferation, bactericidal and pollutants degradation performance. Journal of Photochemistry and Photobiology B: Biology, 182: 62-70.10.1016/j.jphotobiol.2018.03.02029621690Search in Google Scholar

Konne, J.L., Okpara, K., 2014, Remediation of nickel from crude oil obtained from Bomu oil field using cassava waste water starch stabilized magnetic nanoparticles. Energy and Environment Research, 4: 25-31.10.5539/eer.v4n1p25Search in Google Scholar

Konne, J.L., Tubotamuno, P.G., Okwelle, R.F., Dimeari, F.B., 2015, Removal of Ni (II), Co (II) and Pb (II) ions from aqueous media using starch stabilized magnetic nanoparticles as adsorbents. Nigerian Journal of Chemical Research, 20: 10-18.Search in Google Scholar

Labulo, A.H., Adesuji, E.T., Dedeke, O.A., Bodede, O.S., Oseghale, C.O., Moodley, R., Nyamori, V.O., Dare, E.O., Adegoke, O.A., 2016, A dualpurpose silver nanoparticles biosynthesized using aqueous leaf extract of Detarium microcarpum: An under-utilized species. Talanta, 160: 735-744.10.1016/j.talanta.2016.07.06627591670Search in Google Scholar

Labulo, A.H., Adesuji, T.E., Oseghale, C.O., Omojola, J., Bodede, O.S., Dare, E.O., Akinsiku, A.A., 2016a, Biosynthesis of silver nanoparticles using Garcinia kola and its antimicrobial potential. African Journal of Pure and Applied Chemistry, 10: 1-7.10.5897/AJPAC2015.0650Open DOISearch in Google Scholar

Larayetan, R., Ojemaye, M.O., Okoh, O.O., Okoh, A.I., 2019a, Silver nanoparticles mediated by Callistemon citrinus extracts and their antimalaria, antitrypanosoma and antibacterial efficacy. Journal of Molecular Liquids, 273: 615-625.10.1016/j.molliq.2018.10.020Search in Google Scholar

Larayetan, R., Ojemaye, M.O., Okoh, O.O., Sadimenko, A., Okoh, A.I., 2019b, Synthesis, characterization, antimalarial, antitrypanocidal and antimicrobial properties of gold nanoparticle. Green Chemistry Letters and Reviews, 12: 61-68.10.1080/17518253.2019.1569730Search in Google Scholar

Lateef, A., 2004, The microbiology of a pharmaceutical effluent and its public health implications. World Journal of Microbiology and Biotechnology, 20: 167-171.10.1023/B:WIBI.0000021752.29468.4eOpen DOISearch in Google Scholar

Lateef, A., Adelere, I.A., Gueguim-Kana, E.B., 2015b, The biology and potential biotechnological applications of Bacillus safensis. Biologia, 70: 411-419.10.1515/biolog-2015-0062Search in Google Scholar

Lateef, A., Adelere, I.A., Gueguim-Kana, E.B., 2015c, Bacillus safensis LAU 13: a new source of keratinase and its multi-functional biocatalytic applications. Biotechnology and Biotechnological Equipment, 29: 54-63.10.1080/13102818.2014.986360468406826740788Search in Google Scholar

Lateef, A., Adelere, I.A., Gueguim-Kana, E.B., Asafa, T.B., Beukes, L.S., 2015a, Green synthesis of silver nanoparticles using keratinase obtained from a strain of Bacillus safensis LAU 13. International Nano Letters, 5: 29-35.10.1007/s40089-014-0133-4Search in Google Scholar

Lateef, A., Akande, M.A., Ojo, S.A., Folarin, B.I., Gueguim-Kana, E.B., and Beukes, L.S., 2016c, Paper wasp nest-mediated biosynthesis of silver nanoparticles for antimicrobial, catalytic, anticoagulant, and thrombolytic applications. 3 Biotech, 6: 140.2833021210.1007/s13205-016-0459-x491750028330212Search in Google Scholar

Lateef, A., Akande, M.A., Azeez, M.A., Ojo, S.A., Folarin, B.I., Gueguim-Kana, E.B., Beukes, L.S., 2016g, Phytosynthesis of silver nanoparticles (AgNPs) using miracle fruit plant (Synsepalum dulcificum) for antimicrobial, catalytic, anticoagulant, and thrombolytic applications. Nanotechnology Reviews, 5: 507-520.10.1515/ntrev-2016-0039Search in Google Scholar

Lateef, A., Yekeen, T.A., 2006, Microbial attributes of a pharmaceutical effluent and its genotoxicity on Allium cepa. International Journal of Environmental Studies, 63: 534-536.Search in Google Scholar

Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Azeez, L., Ajibade, S.E., Ojo, S.A., Gueguim-Kana, E.B., Beukes, L.S., 2016b, Biogenic synthesis of silver nanoparticles using a pod extract of Cola nitida: Antibacterial, antioxidant activities and application as a paint additive. Journal of Taibah University for Science, 10: 551-562.10.1016/j.jtusci.2015.10.010Search in Google Scholar

Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Ajetomobi, F.E., Gueguim-Kana, E.B., Beukes, L.S., 2015e, Cola nitida-mediated biogenic synthesis of silver nanoparticles using seed and seed shell extracts and evaluation of antibacterial activities. BioNanoScience, 5: 196-205.10.1007/s12668-015-0181-xSearch in Google Scholar

Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Azeez, L., Ojo, S.A., Gueguim-Kana, E.B., Beukes, L.S., 2016f, Cocoa pod husk extract-mediated biosynthesis of silver nanoparticles: its antimicrobial, antioxidant and larvicidal activities. Journal of Nanostructure in Chemistry, 6: 159-169.10.1007/s40097-016-0191-4Search in Google Scholar

Lateef, A., Folarin, B.I., Oladejo, S.M., Akinola, P.O., Beukes, L.S., Gueguim-Kana, E.B., 2018b, Characterization, antimicrobial, antioxidant and anticoagulant activities of silver nanoparticles synthesized from Petiveria alliacea L. leaf extract. Preparative Biochemistry and Biotechnology, 48: 646-652.10.1080/10826068.2018.147986429958093Open DOISearch in Google Scholar

Lateef, A., Ogunkunle, A.T.J., Adigun, G.O., 2016a, Google scholar citation in retrospect: visibility and contributions of African scholars. COLLNET Journal of Scientometrics and Information Management, 10: 219-236.10.1080/09737766.2016.1213966Search in Google Scholar

Lateef, A., Ojo, S.A., Akinwale, A.S., Azeez, L., Gueguim-Kana, E.B., and Beukes, L.S., 2015d, Biogenic synthesis of silver nanoparticles using cell-free extract of Bacillus safensis LAU 13: antimicrobial, free radical scavenging and larvicidal activities. Biologia, 70: 1295-1306.10.1515/biolog-2015-0164Search in Google Scholar

Lateef, A., Ojo, S.A., Elegbede, J.A., 2016i, The emerging roles of arthropods and their metabolites in the green synthesis of metallic nanoparticles. Nanotechnology Reviews, 5: 601-622.10.1515/ntrev-2016-0049Search in Google Scholar

Lateef, A., Ojo, S.A., Oladejo, S.M., 2016e, Anti-candida, anti-coagulant and thrombolytic activities of biosynthesized silver nanoparticles using cell-free extract of Bacillus safensis LAU 13. Process Biochemistry, 51: 1406-1412.10.1016/j.procbio.2016.06.027Open DOISearch in Google Scholar

Lateef, A., Ojo, S.A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Gueguim-Kana, E.B., Beukes, L.S., 2016d, Cobweb as novel biomaterial for the green and eco-friendly synthesis of silver nanoparticles. Applied Nanoscience, 6: 863-874.10.1007/s13204-015-0492-9Search in Google Scholar

Lateef, A., Ojo, S.A., Elegbede, J.A., Akinola, P.O., Akanni, E.O., 2018a, Nanomedical applications of nanoparticles for blood coagulation disorders. In: Environmental Nanotechnology, Volume 1. Eds: Dasgupta, N., Ranjan, S., and Lichtfouse, E. https://doi.org/10.1007/978-3-319-76090-2_8. Springer International Publishing AG, Cham, Switzerland. ISBN 978-3-319-76089-6. Pp. 243-277.10.1007/978-3-319-76090-2_8.Cham,Switzerland.ISBN978-3-319-76089-6.Pp.243-277Open DOISearch in Google Scholar

Lateef, A., Ojo, S.A., Elegbede, J.A., Azeez, M.A., Yekeen, T.A., Akinboro, A., 2017. Evaluation of some biosynthesized silver nanoparticles for biomedical applications: hydrogen peroxide scavenging, anticoagulant and thrombolytic activities. Journal of Cluster Science, 28: 1379-1392.10.1007/s10876-016-1146-0Open DOISearch in Google Scholar

Lateef, A., Ojo, S.A., Folarin, B.I., Gueguim-Kana, E.B., Beukes, L.S., 2016h, Kolanut (Cola nitida) mediated synthesis of silver-gold alloy nanoparticles: antifungal, catalytic, larvicidal and thrombolytic applications. Journal of Cluster Science, 27: 1561-1577.10.1007/s10876-016-1019-6Open DOISearch in Google Scholar

Lateef, A., Yekeen, T.A., Ufuoma, P.E., 2007, Bacteriology and genotoxicity of some pharmaceutical wastewaters in Nigeria. International Journal of Environment and Health, 1: 551-562.10.1504/IJENVH.2007.018572Search in Google Scholar

Lateef. A., Adeeyo, A.O., 2015, Green synthesis and antibacterial activities of silver nanoparticles using extracellular laccase of Lentinus edodes. Notulae Scientia Biologicae, 7: 405-411.10.15835/nsb749643Search in Google Scholar

LAUTECH News, 2017, LAUTECH Nanotechnology Research Group (NANO+) declared as the leader in the biosynthesis of nanoparticles in Nigeria.https://news.lautech.edu.ng/index.php?id=330 (Accessed 26 August, 2017).Search in Google Scholar

LAUTECH News, 2018, Federal ministry of science and technology throws weight behind LAUTECH Nanotechnology Research Group during LAUTECH NANO 2018 Conference.https://news.lautech.edu.ng/index.php?id=377 (Accessed 2 November, 2018).Search in Google Scholar

Leinonen, A., Kivisaari, S., 2010, Nanotechnology perceptions: Literature review on media coverage, public opinion and NGO perspectives. VTT Tiedotteita-Research Notes 2559. 55 p.Search in Google Scholar

Maduabuchi, E.K., Noundou, X.S., Ejike, U.S., Atuzie, W., 2018, Biosynthesis, characterization and antimicrobial activity of silver nanoparticles using cell free lysate of Bacillus subtilis: A biotechnology approach. American Journal of Nanoscience and Nanotechnology Research, 6: 18-27.Search in Google Scholar

Mamuru, S.A, Bello, A.S., Hamman, S.B., 2015, Annona squamosa leaf extract as an efficient bioreducing agent in the synthesis of chromium and nickel nanoparticles. International Journal of Applied Sciences and Biotechnology, 3: 167-169.10.3126/ijasbt.v3i2.11651Search in Google Scholar

Mamuru, S.A., Jaji, N., 2015, Voltammetric and impedimetric behaviour of phytosynthesized nickel nanoparticles. Journal of Nanostructure in Chemistry, 5: 347-356.10.1007/s40097-015-0166-xSearch in Google Scholar

Mfon, R.E., Odiaka, N.I., Sarua, A., 2017, Interactive effect of colloidal solution of zinc oxide nanoparticles biosynthesized using Ocimum gratissimum and Vernonia amygdalina leaf extracts on the growth of Amaranthus cruentus seeds. African Journal of Biotechnology, 16: 1481-1489.Search in Google Scholar

Mohammad, A., Lau, C.H., Zaharim, A., Omar, M.Z., 2012, Elements of nanotechnology education in engineering curriculum worldwide. Procedia-Social and Behavioral Sciences, 60: 405-412.10.1016/j.sbspro.2012.09.398Search in Google Scholar

Mohanpuria, P., Rana, N.K., Yadav, S.K., 2008, Biosynthesis of nanoparticles: technological concepts and future applications. Journal of Nanoparticle Research, 10: 507-517.10.1007/s11051-007-9275-xSearch in Google Scholar

Moja, T., 2000, Nigeria education sector analysis: An analytical synthesis of performance and main issues. World Bank Report, 3: 46-56.Search in Google Scholar

Musa, H., Abubakar, A.A., 2019, Synthesis, characterization and application of silver-nanoparticles-embedded alkyd resins derived from Jatropha seed oil. Fudma Journal of Sciences, 3: 312-320.Search in Google Scholar

National Agency for Science and Engineering Infrastructure, 2019, Nanotechnology. https://www.naseni.org/nanotechnology.html (Accessed 6 April, 2019).Search in Google Scholar

National Board for Technical Education, 2019, https://net.nbte.gov.ng/ (Accessed 6 April, 2019).Search in Google Scholar

National Commission for Colleges of Education, 2019, http://www.ncceonline.edu.ng/colleges.php (Accessed 6 April, 2019).Search in Google Scholar

National Universities Commission, 2019, http://nuc.edu.ng/nigerianuniverisities/ (Accessed 20 April, 2019).Search in Google Scholar

Nigerian Television Authority, 2018, FG inaugurates National Steering Committee on Development of Nanotechnology. http://www.nta.ng/news/technology/20180220-fg-inauguratesnational-steering-committee-on-development-ofnanotechnology/ (Accessed 6 April, 2019).Search in Google Scholar

National Insight News, 2018, 2nd LAUTECHNANO Conference Holds in October. http://nationalinsightnews.com/2nd-lautechnanoconference-holds-in-october/ (Accessed 30 September, 2018).Search in Google Scholar

Num, S.M., Useh, N.M., 2013, Nanotechnology applications in veterinary diagnostics and therapeutics. Sokoto Journal of Veterinary Sciences, 11: 10-14.10.4314/sokjvs.v11i2.2Search in Google Scholar

Obayemi, J.D., Dozie-Nwachukwu, S., Danyuo, Y., Odusanya, O.S., Anuku, N., Malatesta, K., Soboyejo, W.O., 2015, Biosynthesis and the conjugation of magnetite nanoparticles with luteinizing hormone releasing hormone (LHRH). Materials Science and Engineering: C, 46: 482-496.10.1016/j.msec.2014.10.08125492013Search in Google Scholar

Obot, I.B., Umoren, S.A., Johnson, A.S., 2013, Sunlight-mediated synthesis of silver nanoparticles using honey and its promising anticorrosion potentials for mild steel in acidic environments. Journal of Material and Environmental Science, 4: 1013-1018.Search in Google Scholar

Ochekpe, N.A., Olorunfemi, P.O., Ngwuluka, N.C., 2009a, Nanotechnology and Drug Delivery Part 1: Background and Applications. Tropical Journal of Pharmaceutical Research, 8: 265-274.10.4314/tjpr.v8i3.44546Search in Google Scholar

Ochekpe, N.A., Olorunfemi, P.O., Ngwuluka, N.C., 2009b, Nanotechnology and Drug Delivery Part 2: Nanostructures for Drug Delivery. Tropical Journal of Pharmaceutical Research, 8: 275-287.10.4314/tjpr.v8i3.44547Search in Google Scholar

Oduleye, S.O., 1985, Decline in Nigerian universities. Higher Education, 14: 17-40.10.1007/BF00155651Open DOISearch in Google Scholar

Ogunsile, B.O, Labulo, A.H., Fajemilehin, A.M., 2016, Green synthesis of silver nanoparticles from leaf extracts of Parquetina nigrescens and Synedrella nodiflora and their antimicrobial activity. Ife Journal of Science, 18: 245-254.Search in Google Scholar

Ogunyemi, S.O., Abdallah, Y., Zhang, M., Fouad, H., Hong, X., Ibrahim, E., Masum, M.M.I., Hossain, A., Mo, J. Li, B., 2019, Green synthesis of zinc oxide nanoparticles using different plant extracts and their antibacterial activity against Xanthomonas oryzae pv. oryzae. Artificial Cells, Nanomedicine, and Biotechnology, 47: 341-352.10.1080/21691401.2018.155767130691311Search in Google Scholar

Ojo, A.B., Ojo, O.A., Oyinloye, B.E., Ajiboye, B.O., Osukoya, O.A., Ogunniran, A.O., Fadugba, A., Olasehinde, O., Idowu, O., 2018, Characterization and biological activities of biosynthesized silver nanoparticles from stems of Blighia sapida KD Koenig. Journal of Bionanoscience, 12: 71-75.10.1166/jbns.2018.1497Search in Google Scholar

Ojo, O.A., Oyinloye, B.E., Ojo, A.B., Ajiboye, B.O., Olayide, I.I., Idowu, O., Olasehinde, O., Fadugba, A.., Adewunmi, F., 2018, Green-route mediated synthesis of silver nanoparticles (AgNPs) from Syzygium cumini (L.) Skeels polyphenolic-rich leaf extracts and investigation of their antimicrobial activity. IET Nanobiotechnology, 12: 305-310.10.1049/iet-nbt.2017.0127Open DOISearch in Google Scholar

Ojo, S.A., Lateef, A., Azeez, M.A., Oladejo, S.M., Akinwale, A.S., Asafa, T.B., Yekeen, T.A., Akinboro, A., Oladipo, I.C., Gueguim-Kana, E.B., Beukes, L.S., 2016, Biomedical and catalytic applications of gold and silver-gold alloy nanoparticles biosynthesized using cell-free extract of Bacillus safensis LAU 13: antifungal, dye degradation, anti-coagulant and thrombolytic activities. IEEE Transactions on Nanobioscience, 15: 433-442.10.1109/TNB.2016.255916127164598Open DOISearch in Google Scholar

Okeke, I., Iloanusi, O., 2014, Application of nanotechnology for improving energy security. Proceedings of the 1st African International Conference/Workshop on Applications of Nanotechnology to Energy, Health and Environment, UNN, March 23-29, 2014. Pp. 237-243.Search in Google Scholar

Okeniyi, J.O., Popoola, A.P.I., Ojewumi, M.E., Okeniyi, E.T., Ikotun, J.O., 2018, Tectona grandis capped silver-nanoparticle material effects on microbial strains inducing microbiologically influenced corrosion. International Journal of Chemical Engineering, Article ID 7161537. https://doi.org/10.1155/2018/7161537.10.1155/2018/7161537Open DOISearch in Google Scholar

Okeniyi, J.O., John, G.S., Owoeye, T.F., Okeniyi, E.T., Akinlabu, D.K., Taiwo, O.S., Awotoye, O.A., Ige, O.J., Obafemi, Y.D., 2017, Effects of Dialium guineense based zinc nanoparticle material on the inhibition of microbes inducing microbiologically influenced corrosion. In: Proceedings of the 3rd Pan American Materials Congress (Eds: Meyers et al.), pp. 21-31, The Minerals, Metals & Materials Series, DOI 10.1007/978-3-319-52132-9_3. Springer International Publishing.10.1007/978-3-319-52132-9_3.Open DOISearch in Google Scholar

Oladipo, I.C., Lateef, A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Akinwale, A.S., Gueguim-Kana, E.B., Beukes, L.S., 2017b, Green synthesis and antimicrobial activities of silver nanoparticles using cell-free extracts of Enterococcus species. Notulae Scientia Biologicae, 9: 196-203.10.15835/nsb929938Search in Google Scholar

Oladipo, I.C., Lateef, A., Elegbede, J.A., Azeez, M.A., Asafa, T.B., Yekeen, T.A., Akinboro, A., Gueguim-Kana, E.B., Beukes, L.S., Oluyide, T.O., Atanda, O.R., 2017a, Enterococcus species for the one-pot biofabrication of gold nanoparticles: characterization and nanobiotechnological applications. Journal of Photochemistry and Photobiology B: Biology, 173: 250-257.10.1016/j.jphotobiol.2017.06.00328601037Search in Google Scholar

Olajire, A.A., Abidemi, J.J., Lateef, A., Benson, N.U., 2017c, Adsorptive desulphurization of model oil by Ag nanoparticles-modified activated carbon prepared from brewer’s spent grains. Journal of Environmental Chemical Engineering, 5: 147-159.10.1016/j.jece.2016.11.033Search in Google Scholar

Olajire, A.A., Ifediora, N.F., Bello, M.D., Benson, N.U., 2018, Green synthesis of copper nanoparticles using Alchornea laxiflora leaf extract and their catalytic application for oxidative desulphurization of model oil. Iranian Journal of Science and Technology, Transactions A: Science, 42: 1935-1946.10.1007/s40995-017-0404-9Open DOISearch in Google Scholar

Olajire, A.A., Kareem, A., Olaleke, A., 2017, Green synthesis of bimetallic Pt@Cu nanostructures for catalytic oxidative desulfurization of model oil. Journal of Nanostructure in Chemistry, 7: 159-170.10.1007/s40097-017-0223-8Search in Google Scholar

Olajire, A.A., Olanrewaju, S.A., Lawal, W.H., 2017d. Silver nanoparticleassisted adsorptive desulfurization by composted agro-waste activated carbons. International Journal of Environmental Research, 11: 263-279.10.1007/s41742-017-0025-3Open DOISearch in Google Scholar

Olajire, A.A., Adeyeye, G.O., Yusuf, R.A., 2017, Alchornea laxiflora bark extract assisted green synthesis of platinum nanoparticles for oxidative desulphurization of model oil. Journal of Cluster Science, 28: 1565-1578.10.1007/s10876-017-1167-3Open DOISearch in Google Scholar

Olajire, A.A., Adesina, O.O., 2017, Green approach to synthesis of Pt and bimetallic Au@Pt nanoparticles using Carica papaya leaf extract and their characterization. Journal of Nanostructures, 7: 338-344.Search in Google Scholar

Oluwafemi, O.S., Adeyemi, O.O., 2010, One-pot room temperature synthesis of biopolymer-capped ZnSe nanoparticles. Materials Letters, 64: 2310-2313.10.1016/j.matlet.2010.07.021Open DOISearch in Google Scholar

Oluwafemi, O. S., Revaprasadu, N., 2008, A facile, “green” one–step, room temperature synthesis of a series of monodispersed MSe (M=Cd or Zn) water dispersible nanoparticles. MRS Online Proceedings Library Archive 1138-FF12-19. https://doi.org/10.1557/PROC-1138-FF12-19.10.1557/PROC-1138-FF12-19Open DOISearch in Google Scholar

Oluwafemi, O.S., 2009, A novel “green” synthesis of starch-capped CdSe nanostructures. Colloids and Surfaces B: Biointerfaces, 73: 382-386.10.1016/j.colsurfb.2009.06.01119577905Search in Google Scholar

Oluwafemi, O.S., Revaprasadu, N., Adeyemi, O.O. (2010). A facile “green” synthesis of ascorbic acid-capped ZnSe nanoparticles. Colloids and Surfaces B: Biointerfaces, 79: 126-130.Search in Google Scholar

Oluwaniyi, O.O., Adegoke, H.I., Adesuji, E.T., Alabi, A.B., Bodede, S.O., Labulo, A.H., Oseghale, C.O., 2016, Biosynthesis of silver nanoparticles using aqueous leaf extract of Thevetia peruviana Juss and its antimicrobial activities. Applied Nanoscience, 6: 903-912.10.1007/s13204-015-0505-8Search in Google Scholar

Oni, Y., Obayemi, J.D., Kao, K., Dozie-Nwachukwu, S., Odusanya, S., Anuku, N., Soboyejo, W.O., 2016, The role of adhesion in gold nanoparticles for cancer detection and treatment. Advanced Materials Research, 1132: 72-86.10.4028/www.scientific.net/AMR.1132.72Search in Google Scholar

Onimisi, M.Y., Eli, D., Abdu, S.G., Aboh, H.O., Jonathan, E., 2016, Size effects of silver nanoparticles on the photovoltaic performance of a dye sensitized solar cells. American Chemical Science Journal, 13: 1-8.10.9734/ACSJ/2016/24525Search in Google Scholar

Onubun, J.D., Konne, J.L., Cookey, G.A., 2017, Green synthesis of zinc oxide and hydrogenated zinc oxide catalysts. Material Science: An Indian Journal, 15: 122.10.1155/2017/5219850Search in Google Scholar

Onyenanu, I.U., 2014, Cancer Detection and Treatment in Human: Nanotechnology Application: an advanced Approach. Proceedings of the 1st African International Conference/Workshop on Applications of Nanotechnology to Energy, Health and Environment, UNN, March 23-29, 2014. Pp. 32-37.Search in Google Scholar

Osibe, D.A., Chiejina, N.V., Ogawa, K., Aoyagi, H., 2018, Stable antibacterial silver nanoparticles produced with seed-derived callus extract of Catharanthus roseus. Artificial Cells, Nanomedicine, and Biotechnology, 46: 1266-1273.10.1080/21691401.2017.136792728830244Search in Google Scholar

Ozel, S., Ozel, Y., 2008, Nanotechnology in education and general framework of Nanomanufacturing. International Journal of Education and Information Technologies, 2: 113-120.Search in Google Scholar

Putheti, R.R., Okigbo, R.N., Sai advanapu, M., Chavanpatil, S., 2008, Nanotechnology importance in the pharmaceutical industry. African Journal of Pure and Applied Chemistry, 2: 027-031.Search in Google Scholar

Rocco, M.C., Bainbridge, W.S., 2005, Societal implications of nanoscience and nanotechnology: maximising human benefit. Journal of Nanoparticle Research, 7: 1-13.10.1007/s11051-004-2336-5Open DOISearch in Google Scholar

SCIDEV, 2017, Nanotech holds promise for Africa, but not prioritized. https://www.scidev.net/sub-saharan-africa/rd/news/nanotech-africa-prioritised.html (Accessed 18 October, 2017).Search in Google Scholar

Selim, S.A., Al-Tantawi, R.A., Al-Zaini, S.A., 2015, Integrating nanotechnology concepts and its applications into the secondary stage physics curriculum in Egypt. European Scientific Journal, 11: 193-212.Search in Google Scholar

Senapati, S., Ahmad, A., Khan, M.I., Sastry, M., Kumar, R., 2005, Extracellular biosynthesis of bimetallic Au–Ag alloy nanoparticles. Small, 1: 517-520.10.1002/smll.20040005317193479Search in Google Scholar

Sharma, V.K., Yngard, R.A., Lin, Y., 2009, Silver nanoparticles: green synthesis and their antimicrobial activities. Advances in Colloid and Interface Science, 145: 83-96.10.1016/j.cis.2008.09.00218945421Search in Google Scholar

Shittu, K.O., Bankole, M.T., Abdulkareem, A.S., Abubakre, O.K., Ubaka, A.U., 2017b, Application of gold nanoparticles for improved drug efficiency. Advances in Natural Sciences: Nanoscience and Nanotechnology, 8: 035014. https://doi.org/10.1088/2043-6254/aa7716.10.1088/2043-6254/aa7716Search in Google Scholar

Shittu, O.K., Aaron, S.Y., Oladuntoye, M.D., Lawal, B., 2018, Diminazene aceturate modified nanocomposite for improved efficacy in acute trypanosome infection. Journal of Acute Disease, 7: 36-42.10.4103/2221-6189.228876Search in Google Scholar

Shittu, O. K., Stephen, D.I., 2017, In vitro membranous activity of biosynthesized gold nanoparticle from aqueous leave extract of Nelsonia canescens. European Journal of Medicinal Plants, 15: 1-8.10.9734/EJMP/2016/26377Search in Google Scholar

Shittu, O.K., Stephen, D.I., 2016, Cytotoxicity property of biologically synthesized gold nanoparticles from aqueous leaf extract of Calotropis procera (Apple of Sodom) on MCF-7 cell line. British Journal of Medicine and Medical Research, 15: 1-8.10.9734/BJMMR/2016/26385Search in Google Scholar

Shittu, O.K., Stephen, D.I., Kure, A.H., 2017a, Functionalization of biosynthesized gold nanoparticle from aqueous leaf extract of Catharanthus roseus for antibacterial studies. African Journal of Biomedical Research, 20: 195-202.Search in Google Scholar

Shu’ara, J., 2010, Higher Education statistics-Nigeria experience data collection. A paper presented at the UNESCO Institute of Statistics workshop on Education Statistics in Anglophone countries, Windhoek 17th-21st October, 2010.Search in Google Scholar

Sodeinde, K.O., Dare, E.O., Revaprasadu, N., 2016a, Biosynthesis, characterization and material applications of gold, silver, and palladium nanoparticles using aqueous extract of Basella alba leaves (Basellaceae). The Pacific Journal of Science and Technology, 17: 170-176.Search in Google Scholar

Sodeinde, K.O., Dare, E.O., Lasisi, A.A., Ndungu, P., Revaprasadu, N., 2016b, Green synthesis of Ag, Au and Au–Ag bimetallic nanoparticles using Chrysophyllum albidum aqueous extract for catalytic application in electro-oxidation of methanol. Journal of Bionanoscience, 10: 216-222.10.1166/jbns.2016.1363Search in Google Scholar

The Business Day, 2018a, Group calls for proper research funding in tertiary institutions. The Business Day, Lagos, Nigeria, Oct. 22, 2018; pg. A2.Search in Google Scholar

The Business Day. 2018b, Focus on product formation studies, science minister tells research institutes. The Business Day, Lagos, Nigeria, Nov. 6, 2018; pg. A1.Search in Google Scholar

The Sun, 2019, FUOYE partners S’Africa’s Vaal University on research. https://www.sunnewsonline.com/fuoye-partners-safricas-vaalvarsity-on-research/ (Accessed 17 August, 2019).Search in Google Scholar

Thunugunta, T., Reddy, A.C., Reddy, D.C., 2015, Green synthesis of nanoparticles: current prospectus. Nanotechnology Reviews, 4: 303-323.10.1515/ntrev-2015-0023Search in Google Scholar

Tijani, J.O., Ugochukwu, O., Fadipe, L.A., Bankole, M.T., Abdulkareem, A.S., Roos, W.D., 2019, One-step green synthesis of WO3 nanoparticles using Spondias mombin aqueous extract: effect of solution pH and calcination temperature. Applied Physics A: Materials Science and Processing, 125: 162.10.1007/s00339-019-2450-ySearch in Google Scholar

The Nigerian Tribune, 2017, LAUTECH hosts workshop on nanotechnology-Restates call for proper funding of varsities. The Nigerian Tribune, Tribune House, Ibadan, Nigeria, Aug. 17, 2017; pg. 19.Search in Google Scholar

The Nigerian Tribune, 2018, LAUTECH researchers underscore importance of Nanotechnology. The Nigerian Tribune, Tribune House, Ibadan, Nigeria, Nov. 1, 2018; pg. 21Search in Google Scholar

Tobin, L., Dingwall, K., 2010, Nanoscience and Nanotechnology: Nigeria. In R. Newton (Ed.), Second Annual Report on Nanoscience and Nanotechnology in Africa. Institute of Nanotechnology: Stirling, Singapore.Search in Google Scholar

Uddin, M., Chowdhury, A.R., 2001, Integration of nanotechnology into the undergraduate engineering curriculum. International Conference on Engineering Education, Session 8B2-9: 6-9.Search in Google Scholar

Ulaeto, S.B., Nnorom, I.C., Ite, A.E., Alisa, C.O., 2013, Perceptions of nanotechnology by undergraduate students in some Nigerian Universities. ABSU Journal of Environment, Science and Technology, 3: 437-446.Search in Google Scholar

United Nations Population Fund, 2019, https://www.unfpa.org/sites/default/files/pubpdf/UNFPA_PUB_2019_EN_State_of_World_Population.pdf (Accessed 30 April, 2019).Search in Google Scholar

Usman, A.I., Aziz, A.A., Noqta, O.A., 2019, Green sonochemical synthesis of gold nanoparticles using palm oil leaves extracts. Materials Today: Proceedings 7: 803-807.10.1016/j.matpr.2018.12.078Open DOISearch in Google Scholar

Vanguard, 2018, Scientists gather at UNN for nanotechnology. https://www.vanguardngr.com/2018/07/scientists-gather-atunn-for-nanotechnology/ (Accessed 17 August, 2019).Search in Google Scholar

Yekeen, T.A., Azeez, M.A., Akinboro, A., Lateef, A., Asafa, T.B., Oladipo, I.C., Oladokun, S.O., Ajibola, A.A., 2017a, Safety evaluation of green synthesized Cola nitida pod, seed and seed shell extracts-mediated silver nanoparticles (AgNPs) using Allium cepa assay. Journal of Taibah University for Science, 11: 895-909.10.1016/j.jtusci.2017.06.005Search in Google Scholar

Yekeen, T.A., Azeez, M.A., Lateef, A., Asafa, T.B., Oladipo, I.C., Badmus, J.A., Adejumo, S.A., Ajibola, A.A., 2017b, Cytogenotoxicity potentials of Cocoa pod and bean-mediated green synthesized silver nanoparticles on Allium cepa cells. Caryologia: International Journal of Cytology, Cytosystematics and Cytogenetics, 70: 366-377.10.1080/00087114.2017.1370260Search in Google Scholar

eISSN:
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