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Electrorheological behaviour under oscillatory shear of TiO2 rod-like particles prepared via microwave-assisted molten-salt synthesis

机译:微波辅助熔融盐法合成TiO2棒状颗粒在振荡剪切下的电流变行为

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摘要

Titanium dioxide (TiO2) rod-like particles were synthesized by a simple and rapid microwave-assisted molten-salt method. The X-ray diffraction analysis and electron microscopy provided information on particle composition and morphology, respectively. It was found that during the synthesis process the crystalline phase of TiO2 transformed from anatase into rutile while the morphology changed from nanospheres into micrometer sized rod-like particles. The electrorheological (ER) properties were investigated via oscillatory shear tests. It was found that TiO2 rod-like particles based silicone oil suspensions exhibited higher ER activity than those of original anatase TiO2 nanoparticles probably due to side-by-side solid friction between particles as well as shorter time of their polarization. The changes in ER properties of rod-like particle based suspensions as a function of the applied electric field strength and particles weight fraction were also investigated.
机译:采用简单快速的微波辅助熔融盐法合成了二氧化钛棒状颗粒。 X射线衍射分析和电子显微镜分别提供了有关颗粒组成和形态的信息。发现在合成过程中,TiO2的结晶相从锐钛矿转变为金红石,而形态则从纳米球转变为微米级的棒状颗粒。通过振荡剪切试验研究了电流变性能。发现基于TiO 2棒状颗粒的硅油悬浮液显示出比原始锐钛矿型TiO 2纳米颗粒更高的ER活性,这可能是由于颗粒之间的并排固体摩擦以及它们的极化时间较短。还研究了棒状颗粒基悬浮液的ER特性随所施加电场强度和颗粒重量分数的变化。

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