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PE/PEO blends compatibilized by PE brush immobilized on MWNTs: improved interfacial and structural properties

机译:通过固定在MWNT上的PE刷增容的PE / PEO共混物:改善的界面和结构性能

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摘要

Polyolefin based blends have tremendous commercial importance in view of their exceptional properties. In this study the interface of a biphasic polymer blend of PE (polyethylene) and PEO (polyethylene oxide) has been tailored to reduce the interfacial tension between the phases and to render finer morphology. This was accomplished by employing various strategies like addition of maleated PE (PE grafted maleic anhydride), immobilizing PE chains, ex situ, onto MWNTs by covalent grafting, and in situ grafting of PE chains onto MWNTs during melt processing. Multiwalled nanotubes (MWNTs) with different surface functional groups have been synthesized either a priori or were facilitated during melt mixing at higher temperature. NH2 terminated MWNTs were synthesized by grafting ethylene diamine (EDA) onto carboxyl functionalized carbon nanotubes (COOH(MWNTs) and further, was used to reactively couple with maleated PE to immobilize PE chains on the surface of MWNTs. The covalent coupling of maleated PE with NH2 terminated MWNTs was also realized in situ in the melt extruder at high temperature. Both NH2 terminated MWNTs and the in situ formed PE brush on MWNTs during melt mixing, revealed a significant improvement in the mechanical properties of the blend besides remarkably improving the dispersion of the minor phase (PEO) in the blends. Structural properties of the composites were evaluated and the tensile fractured morphology was assessed using scanning electron microscopy.
机译:鉴于其优异的性能,基于聚烯烃的混合物具有巨大的商业重要性。在这项研究中,对PE(聚乙烯)和PEO(聚环氧乙烷)的双相聚合物共混物的界面进行了定制,以降低相之间的界面张力并提供更精细的形态。这是通过采用各种策略来完成的,例如添加马来酸化的PE(PE接枝的马来酸酐),通过共价接枝将PE链非原位固定在MWNT上,以及在熔体加工过程中将PE链原位接枝到MWNT上。具有不同表面官能团的多壁纳米管(MWNT)可以先验合成,也可以在高温下熔融混合时得到促进。通过将乙二胺(EDA)接枝到羧基官能化碳纳米管(COOH(MWNTs)上)合成NH2端接的MWNT,并进一步与马来酸化的PE反应性偶联,从而将PE链固定在MWNTs的表面。 NH2端接的MWNTs也可以在高温下在熔融挤出机中原位实现,NH2端接的MWNTs和MWNTs上原位形成的PE刷在熔融混合过程中均显示出共混物的机械性能的显着改善,同时显着改善了CBT的分散性。用扫描电子显微镜对复合材料的结构性能进行了评估,并对拉伸断裂的形貌进行了评估。

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