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Polyurethane nanocomposite based gas barrier films, membranes and coatings: A review on synthesis, characterization and potential applications

机译:基于聚氨酯纳米复合材料的阻气膜,膜和涂层:合成,表征和潜在应用的综述

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Polyurethane (PU) and its nanocomposites based gas barrier films and coatings have established a distinctive position among various technologically important materials due to their large-scale potential applications. This review aims at highlighting the gas barrier property of polyurethane nanocomposite (PUNC) based films, membranes and coatings containing platelet-shaped fillers such as clays and graphene in PU matrix. The other fillers such as CNT, POSS, metal nanoparticles and nanocellulose have also been reviewed for their contribution in improving gas barrier property of polymers. The probable transport-mechanism of small gas molecules through PU and PUNCs have been discussed. There is also a discussion on basic PU-chemistry and effect of structure and morphology of PU on its gas barrier property. Various factors which influence the gas permeability through PU and PUNC films and coatings have been scrutinized. Some aspects of improving the gas barrier property of PUNCs have also been discussed. An emphasis is given on various proposed models for prediction of gas permeability through polymer nanocomposites. It also reviews the existing literature related to modeling and prediction of gas permeability of different PUNC membranes, films and coatings. Finally, special attention has been paid to the potential industrial applications of PUNC based films and coatings.
机译:聚氨酯(PU)及其基于纳米复合材料的阻气膜和涂层由于其潜在的大规模应用而在各种技术重要材料中确立了独特的地位。这篇综述旨在强调聚氨酯纳米复合材料(PUNC)的薄膜,膜和涂料的气体阻隔性能,该薄膜,膜和涂料中含有血小板状填充剂,例如PU基质中的粘土和石墨烯。还对其他填料(例如CNT,POSS,金属纳米颗粒和纳米纤维素)在改善聚合物的气体阻隔性方面的贡献进行了综述。已经讨论了小气体分子通过PU和PUNC的可能的传输机理。还讨论了基本的PU化学以及PU的结构和形态对其阻气性的影响。已经研究了影响通过PU和PUNC膜及涂层的气体渗透性的各种因素。还讨论了改善PUNC气体阻隔性的一些方面。重点介绍了各种通过聚合物纳米复合材料预测气体渗透性的模型。它还回顾了与不同PUNC膜,薄膜和涂层的气体渗透性建模和预测有关的现有文献。最后,对基于PUNC的薄膜和涂料的潜在工业应用给予了特别关注。

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