首页> 外文会议>IUPAC 10th International conference on novel materials and their synthesis: Book of abstracts >POLYPROPYLENE NANOCOMPOSITES CONTAINING CARBON NANOTUBE AND REDUCED GRAPHENE OXIDE: SYNTHESIS AND PROPERTIES
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POLYPROPYLENE NANOCOMPOSITES CONTAINING CARBON NANOTUBE AND REDUCED GRAPHENE OXIDE: SYNTHESIS AND PROPERTIES

机译:包含碳纳米管和还原的氧化石墨烯的聚丙烯纳米复合材料:合成与性能

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Polypropylene (PP) is a broadly applicable polymeric material with extremely high performance/cost ratio. There have been continuing efforts to further broadening its application envelop, trying to make full use of the fantastic material. As such, PP has become an open polymer that welcomes modifications on both molecular and material levels. Carbon nanotube (CNT) and graphene (G) are two carbon nano materials with very high mechanical properties and second-to-none electrical and thermal conductivities. Plainly it should be expected that, once they have been exhaustively and uniformly dispersed in PP to form nanocomposites for real, these two nano materials will be significantly beneficial to PP's material properties including, among others, mechanical strengths as well as moduli and, after reaching a certain volume fraction, may even endow their unique electrical and thermal conductivities to the host polymer drastically altering some of its characteristic properties. These are what these nano materials can contribute to PP, but not all. With a powerful molecular tailoring methodology, we have been able to obtain PP/CNT and PP/G dispersion systems with much strengthened interfacial interaction and thus controlled morphological stability. This ensures realization of the above-mentioned -ano effects" by CNT and G. What's more, the ubiquitous existence of the nano materials especially the one-dimensional CNT in PP matrix provides a unique way to resolve some of long-standing problems within PP itself including, among others, the poor interphase interaction in heterophasic PP/EPR copolymers that influence their phase morphology as well as ultimate properties, and the difficulty of making compatible PP/polar polymer alloy without macroscopic phase separation. In all, I will introduce our understanding of what and how carbon nantube and graphene can contribute to polypropylene during my talk in the conference.
机译:聚丙烯(PP)是具有极高性能/成本比的广泛适用的聚合物材料。人们一直在努力进一步扩大其应用范围,试图充分利用这些奇妙的材料。因此,PP已成为一种开放的聚合物,在分子和材料水平上均受到欢迎。碳纳米管(CNT)和石墨烯(G)是两种碳纳米材料,具有非常高的机械性能以及导电率和导热率首屈一指。可以明确地预期,一旦将它们彻底地并均匀地分散在PP中以形成真正的纳米复合材料,这两种纳米材料将极大地有利于PP的材料性能,包括机械强度,模量以及达到在一定体积分数下,甚至可以赋予主体聚合物以独特的导电性和导热性,从而大大改变其某些特性。这些是这些纳米材料可以为PP做出的贡献,但并非全部。借助强大的分子剪裁方法,我们已经能够获得具有大大增强的界面相互作用并因此控制了形态稳定性的PP / CNT和PP / G分散体系。这确保了CNT和G实现上述“阳极效应”。此外,纳米材料特别是PP基体中的一维CNT的普遍存在提供了解决PP中某些长期存在的问题的独特方法。本身包括(其中包括)多相PP / EPR共聚物之间不良的相间相互作用,这些相互作用会影响其相态形态以及最终性能,以及难以在不进行宏观相分离的情况下制造相容的PP /极性聚合物合金。在会议上我的演讲中,了解了碳纳米管和石墨烯对聚丙烯的贡献以及作用方式。

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