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Nanocomposites of poly(1,4-cis-isoprene) with graphite oxide intercalation compounds

机译:聚(1,4-顺式异戊二烯)与氧化石墨插层化合物的纳米复合材料

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摘要

Innovative nanocomposites are obtained by melt blending poly(1,4-cis-isoprene) (PI) and graphite oxide intercalation compounds (GOICs) with dimethyl di(hydrogenated tallow) ammonium (2HT) cations ionically bonded to the graphite oxide layers. GOIC samples with different contents of 2HT are prepared and homogeneously dispersed in the PI matrix. The X-ray diffraction pattern of the GOIC shows an intense 100 reflection due to the hexagonal rotator order of the methylene sequences of long alkyl chains. Said rotator order is present in the nanocomposites, in the absence of any evidence of stacked layers, suggesting the prevailing exfoliation of the GOICs. The cross-linking reaction promoted by sulfur is remarkably accelerated by the GOICs and the maximum modulus is enhanced. GOICs increase stresses at given elongations and the reinforcement under strain.
机译:通过将聚(1,4-顺式异戊二烯)(PI)和氧化石墨嵌入化合物(GOIC)与离子键合到氧化石墨层的二甲基二(氢化牛脂)铵(2HT)阳离子熔融共混获得创新的纳米复合材料。制备具有不同2HT含量的GOIC样品,并将其均匀分散在PI基质中。 GOIC的X射线衍射图显示,由于长烷基链的亚甲基序列的六角形旋转子顺序,反射强烈100。在没有任何堆叠层的迹象的情况下,所述旋转体顺序存在于纳米复合材料中,表明GOIC普遍脱落。硫促进的交联反应被GOIC明显加速,最大模量得到提高。 GOIC在给定的伸长率下会增加应力,在应变下会增强强度。

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