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分散稳定性与介电性能协同作用增强碱土金属掺杂二氧化硅/二氧化钛球的电响应

Enhanced Electroresponse of Alkaline Earth Metal-Doped Silica/Titania Spheres by Synergetic Effect of Dispersion Stability and Dielectric Property.

作者信息

Yoon Chang-Min, Lee Seungae, Cheong Oug Jae, Jang Jyongsik

机构信息

School of Chemical and Biological Engineering, Seoul National University , 599 Gwanak-ro, Gwanak-gu, Seoul 151-742, Korea.

出版信息

ACS Appl Mater Interfaces. 2015 Sep 2;7(34):18977-84. doi: 10.1021/acsami.5b02388. Epub 2015 Aug 21.

Abstract

A series of alkaline earth metal-doped hollow SiO2/TiO2 spheres (EM-HST) are prepared as electrorheological (ER) materials via sonication-mediated etching method with various alkaline earth metal hydroxides as the etchant. The EM-HST spheres are assessed to determine how their hollow interior and metal-doping affects the ER activity. Both the dispersion stability and the dielectric properties of these materials are greatly enhanced by the proposed one-step etching method, which results in significant enhancement of ER activity. These improvements are attributed to increased particle mobility and interfacial polarization originating from the hollow nature of the EM-HST spheres and the effects of EM metal-doping. In particular, Ca-HST-based ER fluid exhibits ER performance which is 7.1-fold and 3.1-fold higher than those of nonhollow core/shell silica/titania (CS/ST) and undoped hollow silica/titania (HST)-based ER fluids, respectively. This study develops a versatile and simple approach to enhancing ER activity through synergetic effects arising from the combination of dispersion stability and the unique dielectric properties of hollow EM-HST spheres. In addition, the multigram scale production described in this experiment can be an excellent advantage for practical and commercial ER application.

摘要

通过超声介导蚀刻法,以各种碱土金属氢氧化物为蚀刻剂,制备了一系列碱土金属掺杂的中空SiO₂/TiO₂球体(EM-HST)作为电流变(ER)材料。对EM-HST球体进行评估,以确定其空心内部和金属掺杂如何影响电流变活性。通过所提出的一步蚀刻法,这些材料的分散稳定性和介电性能都得到了极大的提高,这导致电流变活性显著增强。这些改进归因于颗粒迁移率的增加以及源自EM-HST球体空心性质和EM金属掺杂效应的界面极化。特别是,基于Ca-HST的电流变流体的电流变性能分别比非空心核壳二氧化硅/二氧化钛(CS/ST)和未掺杂的中空二氧化硅/二氧化钛(HST)基电流变流体高7.1倍和3.1倍。本研究开发了一种通用且简单的方法,通过分散稳定性和空心EM-HST球体独特介电性能相结合产生的协同效应来增强电流变活性。此外,本实验中描述的多克规模生产对于实际和商业电流变应用可能是一个极大的优势。

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