[1]
E.P. Giannelis, Polymer layered silicate nanocomposites, Advanced materials. 8 (1996) 29-35.
Google Scholar
[2]
A. Leszczyńska, J. Njuguna, K. Pielichowski, J.R. Banerjee, Polymer/montmorillonite nanocomposites with improved thermal properties: Part I. Factors influencing thermal stability and mechanisms of thermal stability improvement, Thermochim Acta. 453 (2007) 75-96.
DOI: 10.1016/j.tca.2006.11.002
Google Scholar
[3]
D. Sun-Waterhouse, G. Waterhouse, 2 – Recent advances in the application of nanomaterials and nanotechnology in food research A2 – Grumezescu, Alexandru Mihai, in: Novel approaches of nanotechnology in food, MA: Academic Press, Boston, 2016, pp.21-66.
DOI: 10.1016/b978-0-12-804308-0.00002-9
Google Scholar
[4]
S. Jayrajsinh, G. Shankar, Y.K. Agrawal, L. Bakre, Montmorillonite nanoclay as a multifaceted drug-delivery carrier: a review, J. Drug. Deliv. Sci. Technol. 39 (2017) 200-209.
DOI: 10.1016/j.jddst.2017.03.023
Google Scholar
[5]
K. Müller, E. Bugnicourt, M. Latorre, M. Jorda, Y. Echegoyen Sanz, J.M. Lagaron, Review on the processing and properties of polymer nanocomposites and nanocoatings and their applications in the packaging, automotive and solar energy fields, Nanomaterials. 7 (2017) 74.
DOI: 10.3390/nano7040074
Google Scholar
[6]
D.D. Reible, Fundamentals of environmental engineering, Taylor & Francis, New York, (1998).
Google Scholar
[7]
S. Mohanty, S.K. Nayak, B.S. Kaith, S. Kalia, Polymer nanocomposites based on inorganic and organic nanomaterials, Wiley, Hoboken, NJ, (2015).
DOI: 10.1002/9781119179108
Google Scholar
[8]
A. Cheng, S. Wu, D. Jiang, F. Wu, J. Shen, Study of elastomeric polyurethane nanocomposites prepared from grafted organic – montmorillonite, Colloid Polym Sci. 284 (2006) 1057-1061.
DOI: 10.1007/s00396-006-1476-9
Google Scholar
[9]
H. Hosseini, S. Shojaee-Aliabadi, S.M. Hosseini, L. Mirmoghtadaie, Nanoantimicrobials in food industry A2 – Oprea, Alexandra Elena. In: Grumezescu AM, editor, in: Nanotechnology applications in food, Academic Press, Cambridge, 2017, pp.223-243.
DOI: 10.1016/b978-0-12-811942-6.00011-x
Google Scholar
[10]
J. Hayles, L. Johnson, C. Worthley, D. Losic, Nanopesticides: a review of current research and perspectives A2 – Grumezescu, Alexandru Mihai, in: New pesticides and soil sensors, MA: Academic Press, Boston, 2017, pp.193-225.
DOI: 10.1016/b978-0-12-804299-1.00006-0
Google Scholar
[11]
A. Leszczyńska, J. Njuguna, K. Pielichowski, J.R. Banerjee, Polymer/montmorillonite nanocomposites with improved thermal properties: Part II. thermal stability of montmorillonite nanocomposites based on different polymeric matrixes, Thermochim Acta. 454 (2007) 1-22.
DOI: 10.1016/j.tca.2006.11.003
Google Scholar
[12]
Y. Mansoori, S.V. Atghia, S.S. Sanaei, M.R. Zamanloo, G. Imanzadeh, PMMA-clay nanocomposite materials: free-radically grafting of PMMA onto organophilic montmorillonite (20A), Macromol. Res. 18 (2010) 1174-1181.
DOI: 10.1007/s13233-010-1209-2
Google Scholar
[13]
A. Leszczyńska, K. Pielichowski, The mechanical and thermal properties of polyoxymethylene (POM)/organically modified montmorillonite (OMMT) engineering nanocomposites modified with thermoplastic polyurethane (TPU) compatibilizer, in: Boudenne A, Ed. Polymer composite materials: from macro, micro to nanoscale. Materials science forum, 714, Trans Tech Publications Ltd., Stafa-Zurich, 2012. pp.201-209.
DOI: 10.4028/www.scientific.net/msf.714.201
Google Scholar
[14]
T.M. Majka, A. Leszczyńska, B.K. Kandola, W. Pornwannachai, K. Pielichowski, Modification of organo-montmorillonite with disodium H-phosphonate to develop flame retarded polyamide 6 nanocomposites, Appl. Clay Sci. 139 (2017) 28-39.
DOI: 10.1016/j.clay.2017.01.012
Google Scholar
[15]
S. Pavlidou, C.D. Papaspyrides, A review on polymer–layered silicate nanocomposites, Progress in Polymer Science. 33 (2008) 1119-1198.
DOI: 10.1016/j.progpolymsci.2008.07.008
Google Scholar
[16]
M. Alexander, Ph. Dubois, Polymer layered silicate nanocomposites: preparation, properties and uses of a new class of materials, Mater. Sci. and Eng. 28 (2000) 1-63.
Google Scholar
[17]
A. Usiki, A. Tukigase, M. Kato, Preparation and properties of EPDM-clay hybrids, Polymer. 43 (2002) 2185-2189.
DOI: 10.1016/s0032-3861(02)00013-7
Google Scholar
[18]
L.Q. Zhang, Y Z Wang, D.S. Yu, Y.Q. Wang, Z.H. Sun, Process for preparing clay-rubber nm-class composite material, Chinese Patent ZL 98101496.8 (1998).
Google Scholar
[19]
L.Q. Zhang, Y.Z. Wang, Y.Q. Wang, Y. Sui, D.S. Yu, Morphology and mechanical properties of claylstyrene-butadiene rubber nanocomposites, J. Appl. Polym. Sci. 78 (2000) 1873-1878.
DOI: 10.1002/1097-4628(20001209)78:11<1873::aid-app40>3.0.co;2-8
Google Scholar
[20]
L.Q. Zhang, Y.P. Wu, Y.Q. Wang, Y.Z. Wang, H.F. Zhang, D.S. Yu, J.Y. He, The nano-reinforcing and nano-compounding technique of rubber, China Synthetic Rubber Industry. 23 (2000) 71-77.
Google Scholar
[21]
Y.Z. Wang, L.Q. Zhang, C.H. Tnag, D.S. Yu, Preparation and characterization of Rubber-clay nanocomposites, J. Appl. Polym. Sci. 78 (2000) 1879-1833.
Google Scholar
[22]
Y.P. Wu, Y.Q. Wang, H.F. Zhang, Y.Z. Wang, D.S. Yu, L.Q. Zhang, J. Yang, Rubber-pristine clay nanocomposites prepared by co-coagulating rubber latex and clay aqueous suspension, Compos. Sci. Technol. 65 (2005) 1195-1202.
DOI: 10.1016/j.compscitech.2004.11.016
Google Scholar
[23]
Y.P. Wu, Q.X. Jia, D.S. Yu, L.Q. Zhang, Structure and properties of nitrile rubber (NBR)-clay nanocomposites by co-coagulating NBR latex and clay aqueous suspension, J. Appl. Polym. Sci. 89 (2003) 3855.
DOI: 10.1002/app.12568
Google Scholar
[24]
S. Varghese, J. Karger-Kocsis, Natural rubber-based nanocomposites by latex compounding with layered silicates, Polymer. 44 (2003) 4921.
DOI: 10.1016/s0032-3861(03)00480-4
Google Scholar
[25]
S. Takahashi, H.A. Goldberg, C.A. Feeney, D.P. Karim, M. Farrell, K. O'Leary, D.R. Paul, Gas barrier properties of butyl rubberlvermiculite nanocomposite coatings, Polymer. 4 (2006) 3083-3093.
DOI: 10.1016/j.polymer.2006.02.077
Google Scholar
[26]
S. Varghese, K.G. Gatos, A.A. Apostolov, J. Karger-Kocsis, Morphology and mechanical properties of layered silicate reinforced natural and polyurethane rubber blends produced by latex compounding, J. Appl. Polym. Sci. 92 (2004) 543.
DOI: 10.1002/app.20036
Google Scholar
[27]
J.S. Shashok, K.V. Vishnevskiy, Technology of Elastomeric Compositions, BSTU, Minsk, (2014).
Google Scholar
[28]
Sh. Mathew, S. Varghese, Natural Rubber Latex-based Nanocomposites with Layered Silicates, Journal of Rubber Research. 8 (2005) 1-16.
Google Scholar
[29]
U.D. Benson, S.S.M. Abdul Majeed, Rajesh Babu, Natural rubber / OMMT nanocomposites for reinforcement in tyre ply, International Journal of NanoScience and Nanotechnology. 7 (2016) 41-55.
Google Scholar
[30]
V.C. Shunmugasamy, C. Xiang, N. Gupta, Clay/polymer nanocomposites: processing, properties, and applications, in: Kim C-S, Randow C, Sano T, Eds. Hybrid and hierarchical composite materials, Springer International Publishing, Cham, 2015, pp.161-200.
DOI: 10.1007/978-3-319-12868-9_5
Google Scholar