Dispersion of Nano-sized BaTiO3 Particles in Toluene-Ethanol Media Using Phosphate Ester

J. Shibata, N. Murayama, Hyoung-Ho Lee
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引用次数: 2

Abstract

An essential requirement for adequate BaTiO3 suspension is low viscosity at high shear rates for the ease of shaping and a suitable yield stress to maintain the shape after the forming process. The appropriate range of viscosity is reported to be 800–1100 mPa·s at a shear rate of 100 s. Particles need to be in a well-dispersed state to achieve homogenous and fine grain structure in a final sintered product. Four different kinds of phosphate ester were examined about the role as dispersant for submicrosized BaTiO3 particles suspended in toluene-ethanol media. In order to find out the effect of phosphate ester on dispersion state of the suspensions, rheological properties, median size and zeta potential of obtained suspensions were investigated. Oleyl acid phosphate gave the best result as the median diameter of BT-01 is reduced to 0.34 μm in toluene-ethanol media by adding 1mass% oleyl acid phosphate. It is suggested that dispersion enhanced by oleyl acid phosphate is based on steric hindrance due to the large alkyl chain.
磷酸酯在甲苯-乙醇介质中的分散研究
适当的BaTiO3悬浮液的基本要求是在高剪切速率下的低粘度,以便于成型,以及在成型过程后保持合适的屈服应力。在剪切速率为100 s时,适宜的粘度范围为800 ~ 1100mpa·s。在最终的烧结产品中,颗粒需要处于良好的分散状态,以达到均匀和精细的晶粒结构。研究了四种不同的磷酸酯对悬浮在甲苯-乙醇介质中的亚微BaTiO3颗粒的分散剂作用。为了了解磷酸酯对悬浮液分散状态的影响,研究了所得悬浮液的流变性能、中位粒径和zeta电位。在甲苯-乙醇介质中,加入1mass%的油酸磷酸,BT-01的中位直径降至0.34 μm,效果最好。认为磷酸油酸的分散性增强是基于大烷基链的位阻作用。
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