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首页> 外文期刊>Macromolecular materials and engineering >Tuning the Conductivity of Nanocomposites through Nanoparticle Migration and Interface Crossing in Immiscible Polymer Blends: A Review on Fundamental Understanding
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Tuning the Conductivity of Nanocomposites through Nanoparticle Migration and Interface Crossing in Immiscible Polymer Blends: A Review on Fundamental Understanding

机译:优化纳米复合材料的导电性穿越在纳米颗粒迁移和接口非混相聚合物混合:一个综述基本的理解

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摘要

This article critically reviews the detailed fundamental understanding of the influence of conductive nanoparticle migration on the localization, and hence, electrical conductivity of immiscible polymer blend nanocomposites. Three types of conductive nanoparticles, namely, spherical, tubular, and platelet, are discussed with respect to their migration and electrical conductivity of obtained nanocomposites. A complete migration process consists of bulk migration within one component, contact with the interface, and penetration to the other component. During processing, the wetting coefficient parameter is the main thermodynamically controlling factor for nanoparticle localization. However, kinetic effects, such as mixing sequence and intensity, viscosity ratio, size and shape of the nanoparticles, and mixing time, can play a substantial role in determining the final locations of nanoparticles. Moreover, the rate of migration varies with the surface chemistry of the nanoparticles. It has been reported that nanoparticles in a more viscous phase move slower compared with a low viscous phase. Furthermore, nanoparticles having high aspect ratios and surface polarities compatible with the other component migrating faster. It is established that immiscible polymer blend nanocomposites with a "double percolation" structure having higher conductivity with nanoparticles are localized at the interface of the co-continuous blends.
机译:本文批判性评论的详细基本理解的影响导电纳米粒子迁移上定位,因此,导电性非混相共混聚合物纳米复合材料。类型的导电纳米粒子,即球形、管状和血小板,进行了讨论关于他们的迁移和电获得纳米复合材料的导电性。完成迁移过程由散装移民在一个组件,接触接口和渗透组件。系数参数是主要的热动力学控制因素纳米颗粒本地化。影响,如混合序列和强度,粘度比的大小和形状纳米粒子,混合时间,可以发挥在确定最后的实质性作用纳米粒子的位置。迁移变化的表面化学纳米粒子。纳米粒子在一个更粘稠阶段缓慢移动相比之下,粘性较低阶段。纳米粒子具有高纵横比表面极性与其他兼容组件迁移速度更快。非混相共混聚合物纳米复合材料有更高的“双重渗流”结构电导率与纳米粒子本地化的接口co-continuous混合。

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