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首页> 外文期刊>The Journal of Chemical Physics >Self-assembly and structural relaxation in a model ionomer melt
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Self-assembly and structural relaxation in a model ionomer melt

机译:模型离聚物熔体中的自组装和结构弛豫

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摘要

Molecular dynamics simulations are used to understand the self-assembly and structural relaxation in ionomer melts containing less than 10% degree of ionization on the backbone. The self-assembly of charged sites and counterions shows structural ordering and agglomeration with a range of structures that can be achieved by changing the dielectric constant of the medium. The intermediate scattering function shows a decoupling of charge and counterion relaxation at longer length scales for only high dielectric constant and at shorter length scales for all dielectric constants. Overall, the slow structural decay of counterions in the strongly correlated ionomer system closely resembles transport properties of semi-flexible polymers. (C) 2015 AIP Publishing LLC.
机译:分子动力学模拟用于了解主链上电离度小于10%的离聚物熔体的自组装和结构弛豫。带电位点和抗衡离子的自组装显示出结构排序和附聚,以及通过改变介质的介电常数可以实现的一系列结构。中间散射函数在较长的长度尺度上仅对高介电常数显示出电荷和抗衡离子弛豫的解耦,而对于所有介电常数则在较短的长度尺度上显示出。总体而言,抗衡离子在高度相关的离聚物体系中的缓慢结构衰减与半柔性聚合物的传输性质极为相似。 (C)2015 AIP Publishing LLC。

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