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MECHANICAL PROPERTIES OF CEMENT MORTAR WITH GRAPHENE OXIDE


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Dahman, Y. (2017). An Introduction to Nanotechnology. In: Y. Dahman, H. H. Lo & M. Edney (Eds.), Nanotechnoogy and Functional Materials for Engineers. Elsevier, 1–17. Dahman Y. ( 2017 ). An Introduction to Nanotechnology. In: Y. Dahman H. H. Lo & M. Edney (Eds.), Nanotechnoogy and Functional Materials for Engineers . Elsevier , 1 17 . Search in Google Scholar

Sanchez, F. & Sobolev, K. (2010). Nanotechnology in concrete – A review. Construction and Building Materials, 24, 2060–2071. Sanchez F. & Sobolev K. ( 2010 ). Nanotechnology in concrete – A review . Construction and Building Materials , 24 , 2060 2071 . 10.1016/j.conbuildmat.2010.03.014 Search in Google Scholar

Kong, D., Du, X., Wei, S., Zhang, H., Yang, Y. & Shah, S. P. (2012). Influence of nano-silica agglomeration on microstructure and properties of the hardened cement-based materials. Construction and Building Materials, 37, 707–715. Kong D. Du X. Wei S. Zhang H. Yang Y. & Shah S. P. ( 2012 ). Influence of nano-silica agglomeration on microstructure and properties of the hardened cement-based materials . Construction and Building Materials , 37 , 707 715 . 10.1016/j.conbuildmat.2012.08.006 Search in Google Scholar

Kong, D., Su, Y., Du, X., Yang, Y., Wei, S. & Shah, A. P. (2013). Influence of nano-silica agglomeration on fresh properties of cement pastes. Construction and Building Materials, 43, 557–562. Kong D. Su Y. Du X. Yang Y. Wei S. & Shah A. P. ( 2013 ). Influence of nano-silica agglomeration on fresh properties of cement pastes . Construction and Building Materials , 43 , 557 562 . 10.1016/j.conbuildmat.2013.02.066 Search in Google Scholar

Li, Z., Wang, H., He, S., Lu, Y. & Wang, M. (2006). Investigations on the preparation and mechanical properties of the nano-alumina reinforced cement composite. Materials Letters, 60, 356–359. Li Z. Wang H. He S. Lu Y. & Wang M. ( 2006 ). Investigations on the preparation and mechanical properties of the nano-alumina reinforced cement composite . Materials Letters , 60 , 356 359 . 10.1016/j.matlet.2005.08.061 Search in Google Scholar

Chen, J. & Poon, C. (2009). Photocatalytic construction and building materials: From fundamentals to applications. Building and Environment, 44, 1899–1906. Chen J. & Poon C. ( 2009 ). Photocatalytic construction and building materials: From fundamentals to applications . Building and Environment , 44 , 1899 1906 . 10.1016/j.buildenv.2009.01.002 Search in Google Scholar

Farzadnia, N., Abang Ali, A. A., Demirboga, R. & Anwar, M. P. (2013). Effect of halloysite nanoclay on mechanical properties, thermal behavior and microstructure of cement mortars. Cement and Concrete Research, 48, 97–104. Farzadnia N. Abang Ali A. A. Demirboga R. & Anwar M. P. ( 2013 ). Effect of halloysite nanoclay on mechanical properties, thermal behavior and microstructure of cement mortars . Cement and Concrete Research , 48 , 97 104 . 10.1016/j.cemconres.2013.03.005 Search in Google Scholar

Li, G. Y., Wang, P. M. & Zhao, X. (2005). Mechanical behavior and microstructure of cement composites incorporating surface-treated multi-walled carbon nanotubes. Carbon, 43, 1239–1245. Li G. Y. Wang P. M. & Zhao X. ( 2005 ). Mechanical behavior and microstructure of cement composites incorporating surface-treated multi-walled carbon nanotubes . Carbon , 43 , 1239 1245 . 10.1016/j.carbon.2004.12.017 Search in Google Scholar

Nochaiya, T. & Chaipanich, A. (2011). Behavior of multi-walled carbon nanotubes on the porosity and microstructure of cement-based materials. Applied Surface Science, 257, 1941–1945. Nochaiya T. & Chaipanich A. ( 2011 ). Behavior of multi-walled carbon nanotubes on the porosity and microstructure of cement-based materials . Applied Surface Science , 257 , 1941 1945 . 10.1016/j.apsusc.2010.09.030 Search in Google Scholar

Singh, V., Joung, D., Zhai, L., Das, S., Khondaker, S. I. & Seal, S. (2011). Graphene based materials: Past, present and future. Progress in Materials Science, 56, 1178–1271. Singh V. Joung D. Zhai L. Das S. Khondaker S. I. & Seal S. ( 2011 ). Graphene based materials: Past, present and future . Progress in Materials Science , 56 , 1178 1271 . 10.1016/j.pmatsci.2011.03.003 Search in Google Scholar

Lee, C., Wei, X., Kysar, J. W. & Hone, J. (2008). Measurement of the elastic properties and intrinsic strength of monolayer graphene. Science, 321, 385–388. Lee C. Wei X. Kysar J. W. & Hone J. ( 2008 ). Measurement of the elastic properties and intrinsic strength of monolayer graphene . Science , 321 , 385 388 . 10.1126/science.1157996 Search in Google Scholar

Papageorgiou, D. G., Kinloch, I. A. & Young, R. J. (2017). Mechanical properties of graphene and graphene-based nanocomposites. Progress in Materials Science, 90, 75–127. Papageorgiou D. G. Kinloch I. A. & Young R. J. ( 2017 ). Mechanical properties of graphene and graphene-based nanocomposites . Progress in Materials Science , 90 , 75 127 . 10.1016/j.pmatsci.2017.07.004 Search in Google Scholar

Kim, J., Cote, L. J. & Huang, J. (2012). Two dimensional soft material: New faces of graphene oxide, Accounts of Chemical Research, 45, 1356–1364. Kim J. Cote L. J. & Huang J. ( 2012 ). Two dimensional soft material: New faces of graphene oxide , Accounts of Chemical Research , 45 , 1356 1364 . 10.1021/ar300047s Search in Google Scholar

Qureshi, T. S. & Panesar, D. K. (2017). A review: the effect of graphene oxide on the properties of cement-based composites. In: CSCE Annual Conference, Vancouver, Canada, pp. 642-1-642-10. Qureshi T. S. & Panesar D. K. ( 2017 ). A review: the effect of graphene oxide on the properties of cement-based composites . In: CSCE Annual Conference , Vancouver, Canada , pp. 642-1 - 642-10 . Search in Google Scholar

Pan, Z., He, L., Qiu, L., Korayem, A. H., Li, G., Zhu, J. W., Collins, F., Li, D., Duan, W. H. & Wang, M. C. (2015). Mechanical properties and microstructure of a graphene oxide-cement composite. Cement and Concrete Composites, 58, 140–147. Pan Z. He L. Qiu L. Korayem A. H. Li G. Zhu J. W. Collins F. Li D. Duan W. H. & Wang M. C. ( 2015 ). Mechanical properties and microstructure of a graphene oxide-cement composite . Cement and Concrete Composites , 58 , 140 147 . 10.1016/j.cemconcomp.2015.02.001 Search in Google Scholar

Li, W., Li, X., Chen, S. J., Liu, Y. M, Duan, W. H. & Shah, S. P. (2017). Effects of graphene oxide on early-age hydration and electrical resistivity of Portland cement paste. Construction and Building Materials 136, 506–514. Li W. Li X. Chen S. J. Liu Y. M Duan W. H. & Shah S. P. ( 2017 ). Effects of graphene oxide on early-age hydration and electrical resistivity of Portland cement paste . Construction and Building Materials 136 , 506 514 . 10.1016/j.conbuildmat.2017.01.066 Search in Google Scholar

Lv, S., Ma, Y., Qiu, C., Sun, T., Liu, J. & Zhou, Q. (2013). Effect of graphene oxide nanosheets of microstructure and mechanical properties of cement composites, Construction and Building Materials, 49, 121–127. Lv S. Ma Y. Qiu C. Sun T. Liu J. & Zhou Q. ( 2013 ). Effect of graphene oxide nanosheets of microstructure and mechanical properties of cement composites , Construction and Building Materials , 49 , 121 127 . 10.1016/j.conbuildmat.2013.08.022 Search in Google Scholar

Peng, H., Ge, Y., Cai, C. S., Zhang, Y. & Liu, Z. (2019). Mechanical properties and microstructure of graphene oxide cement-based composites. Construction and Building Materials 194, 102–109. Peng H. Ge Y. Cai C. S. Zhang Y. & Liu Z. ( 2019 ). Mechanical properties and microstructure of graphene oxide cement-based composites . Construction and Building Materials 194 , 102 109 . 10.1016/j.conbuildmat.2018.10.234 Search in Google Scholar

Mokhtar, M. M., Abo-El-Enein, S. A., Hassaan, M. Y., Morsy, M. S. & Khalil, M. H. (2017). Mechanical performance, pore structure and micro-structural characteristics of graphene oxide nano platelets reinforced cement. Construction and Building Materials 138, 333–339. Mokhtar M. M. Abo-El-Enein S. A. Hassaan M. Y. Morsy M. S. & Khalil M. H. ( 2017 ). Mechanical performance, pore structure and micro-structural characteristics of graphene oxide nano platelets reinforced cement . Construction and Building Materials 138 , 333 339 . 10.1016/j.conbuildmat.2017.02.021 Search in Google Scholar

Birenboim, M., Nadiv, R., Alatawna, A., Buzaglo, M., Schahar, G., Lee, J., Kim, G., Peled, A. & Regev, O. (2019). Reinforcement and workability aspects of graphene-oxide-reinforced cement nanocomposites. Composites Part B, 161, 68–76. Birenboim M. Nadiv R. Alatawna A. Buzaglo M. Schahar G. Lee J. Kim G. Peled A. & Regev O. ( 2019 ). Reinforcement and workability aspects of graphene-oxide-reinforced cement nanocomposites . Composites Part B , 161 , 68 76 . 10.1016/j.compositesb.2018.10.030 Search in Google Scholar

Sabziparvar, A. M., Hosseini, E., Chiniforush, V. & Korayem, A. H. (2019). Barriers to achieving highly dispersed graphene oxide in cementitious composites: An experimental and computational study. Construction and Building Materials, 199, 269–278. Sabziparvar A. M. Hosseini E. Chiniforush V. & Korayem A. H. ( 2019 ). Barriers to achieving highly dispersed graphene oxide in cementitious composites: An experimental and computational study . Construction and Building Materials , 199 , 269 278 . 10.1016/j.conbuildmat.2018.12.030 Search in Google Scholar

Qureshi, T. S., Panesar, D. K., Sidhureddy, B., Chen, A. & Wood, P. C. (2019). Nano-cement composite with graphene oxide produced from epigenetic graphite deposit. Composites Part B, 159, 248–258. Qureshi T. S. Panesar D. K. Sidhureddy B. Chen A. & Wood P. C. ( 2019 ). Nano-cement composite with graphene oxide produced from epigenetic graphite deposit . Composites Part B , 159 , 248 258 . 10.1016/j.compositesb.2018.09.095 Search in Google Scholar

Wang, M., Wang, R., Yao, H., Farhan, S., Zheng, S. & Du, C. (2016). Study on the three dimensional mechanism of graphene oxide nanosheets modified cement. Construction and Building Materials, 126, 730–739. Wang M. Wang R. Yao H. Farhan S. Zheng S. & Du C. ( 2016 ). Study on the three dimensional mechanism of graphene oxide nanosheets modified cement . Construction and Building Materials , 126 , 730 739 . 10.1016/j.conbuildmat.2016.09.092 Search in Google Scholar

Zhao, L., Guo, X., Liu, Y., Zhao, Y., Chen, Z., Zhang, Y., Guo, L., Shu, X. & Liu, J. (2018). Hydration kinetics, pore structure, 3D network calcium silicate hydrate, and mechanical behavior of graphene oxide reinforced cement composites. Construction and Building Materials, 190, 150–163. Zhao L. Guo X. Liu Y. Zhao Y. Chen Z. Zhang Y. Guo L. Shu X. & Liu J. ( 2018 ). Hydration kinetics, pore structure, 3D network calcium silicate hydrate, and mechanical behavior of graphene oxide reinforced cement composites . Construction and Building Materials , 190 , 150 163 . 10.1016/j.conbuildmat.2018.09.105 Search in Google Scholar

Gholampour, A., Valizadeh Kiamahalleh, M., Tran, D. N. H., Ozbakkaloglu, T. & Losic, D. (2017). From Graphene Oxide to Reduced Graphene Oxide: Impact on the Physiochemical and Mechanical Properties of Graphene-Cement Composites, ACS Applied Materials & Interfaces, 9, 43275–43286. Gholampour A. Valizadeh Kiamahalleh M. Tran D. N. H. Ozbakkaloglu T. & Losic D. ( 2017 ). From Graphene Oxide to Reduced Graphene Oxide: Impact on the Physiochemical and Mechanical Properties of Graphene-Cement Composites , ACS Applied Materials & Interfaces , 9 , 43275 43286 . 10.1021/acsami.7b16736 Search in Google Scholar

Krystek, M. (2017). Experimental investigation on mechanical properties of cement mortar containing graphene oxide. In: Proceeding of 9th International Scientific Conference of Civil Engineering and Architecture – Young Scientists 2017. Krystek M. ( 2017 ). Experimental investigation on mechanical properties of cement mortar containing graphene oxide . In: Proceeding of 9th International Scientific Conference of Civil Engineering and Architecture – Young Scientists 2017 . Search in Google Scholar

Krystek, M. (2018). Właściości mechaniczne zaprawy cementowej z dodatkiem tlenku grafenu (Mechanical properties of cement mortar with the addition of graphene oxide). In: K. Knapik & K. Gromysz (Eds.), Ujęcie Aktualnych Problemów Budownictwa. Prace Naukowe Doktorantów. Wydawnictwo Politechniki Śląskiej, 83–90. Krystek M. ( 2018 ). Właściości mechaniczne zaprawy cementowej z dodatkiem tlenku grafenu (Mechanical properties of cement mortar with the addition of graphene oxide) . In: K. Knapik & K. Gromysz (Eds.), Ujęcie Aktualnych Problemów Budownictwa . Prace Naukowe Doktorantów. Wydawnictwo Politechniki Śląskiej , 83 90 . Search in Google Scholar

http://graphenea.com. http://graphenea.com . Search in Google Scholar

PN-EN 196-1: 2016-07 - Methods of cement analyses – Part 1: Strength analysis. PN-EN 196-1: 2016-07 - Methods of cement analyses – Part 1: Strength analysis . Search in Google Scholar

Lu, Z., Li, X., Hanif, A., Chen, B., Parthasarathy, P., Yu, J. & Li, Z. (2017). Early-age interaction mechanism between the graphene oxide and cement hydrates, Construction and Building Materials, 152, 232–239. Lu Z. Li X. Hanif A. Chen B. Parthasarathy P. Yu J. & Li Z. ( 2017 ). Early-age interaction mechanism between the graphene oxide and cement hydrates , Construction and Building Materials , 152 , 232 239 . 10.1016/j.conbuildmat.2017.06.176 Search in Google Scholar

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