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Enhanced electrorheological performance and antisedimentation property of mesoporous anatase TiO2 shell prepared by hydrothermal process

机译:高孔锐钛矿TiO2壳的增强电流性能和抗观天使性能通过水热法制备

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摘要

Mesoporous anatase TiO2 hollow microspheres (MTHMs) with a high surface area (231.1 m(2) g(-1)) were synthesized by sol-gel template-assisted approach and hydrothermal process. The materials possessed a uniform diameter of about 620 nm and a mesoporous shell with thickness of about 180 nm. The microspheres were used as dispersing materials for electrorheological (ER) fluids, which exhibited better ER performance and antisedimentation property than common anatase TiO2 hollow microspheres and ordinary anatase TiO2 particles. The yield stress of the MTHM-based ER fluid (30.0 vol%) was approximately 7.8 kPa under an electric field of 3 kV mm(-1), and the sedimentation ratio was maintained above 78% after 250 h. The good ER activity of the MTHM-based ER fluid was mainly attributed to the high surface effect provided by mesoporous and hollow structure of the MTHMs, leading to a high interfacial polarization under the action of an external electric field. The mesoporous and hollow structure also improved the antisedimentation property of the suspensions by lowering the density of microspheres.
机译:通过溶胶 - 凝胶模板辅助方法和水热法合成了具有高表面积(231.1M(2 )g(-1))的中空锐钛矿TiO 2中空微球(MTHMS)。该材料具有约620nm的均匀直径和厚度为约180nm的介孔壳。将微球用作电流(ER)流体的分散材料,其比常见的锐钛矿TiO2中空微球和普通锐钛矿TiO2颗粒更好地表现出更好的ER性能和干燥晚营性。在3kVmm(-1)的电场下,基于MTHM的ER流体(30.0Vol%)的屈服应力约为7.8kPa,并且在250小时后,沉降比在78%以上保持高于78%。基于MTHM的ER流体的良好ER活性主要归因于MTHMS的介孔和中空结构提供的高表面效应,导致外部电场的作用下的高界面极化。中光和中空结构还通过降低微球的密度改善了悬浮液的抗观性性质。

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