Sarbak, Z. (2005). Clay minerals. LAB Laboratorium, Aparatura, Badania, 3, 9-17 (in Polish).Search in Google Scholar

Sarbak, Z. (2005). Natural silicates and aluminosilicates. LAB Laboratorium, Aparatura, Badania 2, 16-21 (in Polish).Search in Google Scholar

Hendricks, S.B. & Jefferson, M.E. (1938). American Mineralogist, 23(12), 863-875.Search in Google Scholar

Veerabadran, N.G., Price, R.R. & Lvov, Y.M. (2007). Nano: Brief Reports and Reviews, 2 (2), 115-120.10.1142/S1793292007000441Search in Google Scholar

Ruiz-Hitzky, E., Ariga, K. & Lvov, Y. (2007). Bio-Inorganic Hybrid Nanomaterials, Wiley: London, Berlin, 14, pp. 419-441.Search in Google Scholar

Lvov, Y.M., Shchukin, D.G., Möhwald, H. & Price, R.R. (2008). ACS Nano 2 (5), 814-820.10.1021/nn800259qSearch in Google Scholar

http://www.intermark.pl/haloizyt.htmlSearch in Google Scholar

Szczygielska, A. & Kijeński, J. (2010). The application of halloysite as a filler for modification of polypropylene. Part I. The characteristics of halloysite as a filler. Composites, 10(2), 181-185 (in Polish).Search in Google Scholar

Ullmans's Encyclopedia of Industrial Chemistry 2002, (6th ed.) (Thermoplastic Materials).Search in Google Scholar

Rothon, R.N. (2003), Particulate-filled polymer composites, Rapra Technology Ltd, (2nd ed.)Search in Google Scholar

Kurzeja, L., Gibas, E. & Kubica, S. (2008). Polypropylene with powder carbon filler-shungite. Composites 8 (4), 414-418 (in Polish).Search in Google Scholar

Jeziórska, R., (2008). Effect of poly(butylene terephthalate) functionalized with 2,2'-(1,3-phenylene)-bis(2-oxazoline) on the structure and properties of polyamide 6 blends with textile waste containing poly(ethylene terephthalate). Polimery, 53 (3), 201-207 (in Polish).10.14314/polimery.2008.201Search in Google Scholar

Du, M.L., Guo, B.C. & Jia, D.M. (2006). Thermal stability and flame retardant effects of halloysite nanotubes on poly(propylene), Eur. Polym J., 42, 6, 1362-1369. doi:10.1016/j.eurpolymj.2005.12.006.10.1016/j.eurpolymj.2005.12.006Search in Google Scholar

NanturalNano Inc., NaturalNano successfully trials halloysite nanotubes in polypropylene, Plastics Additives & Compounding May/June 2007, 12.10.1016/S1464-391X(07)70049-1Search in Google Scholar

Ning, N.-Y. (2007). Crystallization behavior and mechanical properties of polypropylene/halloysite composites, Polymer, 48, 25, 7374-7384.10.1016/j.polymer.2007.10.005Search in Google Scholar

Liu, M., Guo, B., Lei, Y., Du, M. & Jia, D. (2009). Benzothiazole sulfide compatibilized polypropylene/halloysite nanotubes composites, Appl. Surf. Sci., 255, 4961-4969. doi:10.1016/j.apsusc.2008.12.044.10.1016/j.apsusc.2008.12.044Search in Google Scholar

Liu, M, Jia, Z., Liu, F., Jia, D. & Guo, B. (2010). Tailoring the wettability of polypropylene surfaces with halloysite nanotubes, J. Colloid Interf. Sci., 350, 186-193. doi:10.1016/j.jcis.2010.06.047.10.1016/j.jcis.2010.06.04720638073Search in Google Scholar

Koszkul, J., Polypropylene and its composites, Monograph Czestochowa Uniwersity of Technology, 1997, 50, pp.87 (in Polish).Search in Google Scholar

Collected Applications Thermal Analysis Thermoplastics, Mettler Toledo 2003, pp. 59-60.Search in Google Scholar

Sorrentino, L. et al., (2009). Nano/microcomposites based on PP, nanoclay, and CaCO3, J. Appl. Polym. Sci., Wiley Periodicals, Inc., 113(5), 3362, doi: 10.1002/app.Search in Google Scholar

eISSN:
1899-4741
ISSN:
1509-8117
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Industrial Chemistry, Biotechnology, Chemical Engineering, Process Engineering