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Facile fabrication of self-assembled PMMA/graphene oxide composite particles and their electroresponsive properties

机译:自组装PMMA /氧化石墨烯复合颗粒的制备及其电响应性能

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摘要

Core-shell-structured poly(methyl methacrylate) (PMMA)/graphene oxide (GO) composite particles were prepared using a facile process, in which GO was adsorbed spontaneously onto a microspherical PMMA surface when hydrophobic microspheres were dispersed in deionized (DI) water stabilized by amphiphilic GO under ultrasonication. The fabricated composite was characterized by SEM, TEM, FT-IR, and thermogravimetric analysis. Results showed that the particle surface could be wrapped with GO without the need for surfactants. In addition, electrorheological behavior of the chain-forming process of the PMMA/GO composite particles was observed by optical microscopy under an applied electric field. Both shear stress and shear viscosity related to the strength of the applied electric field were measured using a rotational rheometer. The proposed Cho-Choi-Jhon model was used to describe their ER performances for the entire shear rate region. Moreover, the response of the shear stress to an imposed square voltage at a fixed shear rate was also examined.
机译:核-壳结构的聚甲基丙烯酸甲酯(PMMA)/氧化石墨烯(GO)复合颗粒的制备过程很容易,当疏水性微球分散在去离子水中时,GO会自发吸附在微球PMMA表面上在超声波作用下被两亲GO稳定。通过SEM,TEM,FT-IR和热重分析对制成的复合材料进行表征。结果表明,无需表面活性剂即可用GO包裹颗粒表面。另外,通过在施加电场下的光学显微镜观察了PMMA / GO复合颗粒的链形成过程的电流变行为。使用旋转流变仪测量与施加的电场强度有关的剪切应力和剪切粘度。拟议的Cho-Choi-Jhon模型用于描述其在整个剪切速率区域的ER性能。此外,还研究了剪切应力对以固定剪切速率施加的平方电压的响应。

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