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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Smart monodisperse polystyrene/polyaniline core-shell structured hybrid microspheres fabricated by a controlled releasing technique and their electro-responsive characteristics
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Smart monodisperse polystyrene/polyaniline core-shell structured hybrid microspheres fabricated by a controlled releasing technique and their electro-responsive characteristics

机译:控释技术制备智能单分散聚苯乙烯/聚苯胺核壳结构杂化微球及其电响应特性

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摘要

We synthesized core/shell structured monodisperse semi-conducting polystyrene/polyaniline (PS/ PANI) composite microspheres, and studied their electro-responsive electrorheological (ER) performance under an applied electric field strength when dispersed in silicone oil. An over-layer of the conducting PANI is formed by a controlled releasing process of the aniline pre-adsorbed on the PS seed latex without any surface modification, in which the PS seed microspheres were readily prepared by a dispersion polymerization method. The PS microspheres are observed to be regularly encapsulated with PANI from the morphology test. The ER behaviors of the hybrid microspheres are characterized using a rotational rheometer equipped with a high voltage supplier. The yield stress and flow response as a function of shear rate under certain electric field strengths are investigated using the universal yield stress equation and the Cho-Choi-Jhon model of rheological equation of state, respectively. The relaxation time and achievable polarizability of the fluid from its dielectric analysis were also found to be well correlated with the ER performance of the ER fluid.
机译:我们合成了核/壳结构单分散半导体聚苯乙烯/聚苯胺(PS / PANI)复合微球,并研究了分散在硅油中时在施加电场强度下的电响应电流变性能(ER)。导电PANI的覆盖层是通过预吸附在PS种子胶乳上的苯胺的受控释放过程而形成的,没有任何表面改性,其中PS种子微球易于通过分散聚合方法制备。从形态学测试观察到,PS微球被PANI规则地包封。混合微球的ER行为使用配备有高压电源的旋转流变仪进行表征。分别使用通用屈服应力方程和流变状态方程的Cho-Choi-Jhon模型,研究了在一定电场强度下屈服应力和流动响应与剪切速率的关系。还发现,通过介电分析,流体的弛豫时间和可达到的极化率与ER流体的ER性能密切相关。

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