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首页> 外文期刊>Journal of the European Ceramic Society >High performance varistors prepared from doped ZnO nanopowders made by pilot-scale flame spray pyrolyzer: Sintering, microstructure and properties
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High performance varistors prepared from doped ZnO nanopowders made by pilot-scale flame spray pyrolyzer: Sintering, microstructure and properties

机译:由中试规模火焰喷雾热解器制备的掺杂ZnO纳米粉制备的高性能压敏电阻:烧结,微观结构和性能

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摘要

Doped ZnO nanopowders (<25 nm) with production rate of 2-3 kg h(-1) was synthesized by a single step solution feeding flame spray pyrolysis and were characterized by XRD, TEM, SAED, ICP-OES and BET surface area measurements. The powders were consolidated into greater than 98% dense pellets by two step conventional sintering. The sintered samples showed the formation of spinel, delta-Bi2O3, gamma-Bi2O3 and pyrochlore phases along with the matrix ZnO. The grain size and density of the pellets were varied by changing the sintering temperatures. The grain growth exponent "n" was found to be in the range 3.5-4.0 and the activation energy for grain growth was found to be 304 +/- 10 kJ mol(-1) indicating that the grain growth to be dominated by volume and surface diffusion mechanisms. Electrical properties of samples prepared at different sintering conditions were studied using two different techniques. Breakdown voltage of 14.38 kV cm(-1), coefficient of non-linearity of 171.69 and leakage current density of 1.10 mu LA cm(-2) were obtained for pellets made under different sintering conditions. It was observed that pellets sintered at higher temperatures yielded lower impedance values. The high temperature (>175 degrees C) impedance data was fitted into two parallel RC circuits to calculate the electrical properties of the varistors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过单步进料火焰喷雾热解法合成了2-3 kg h(-1)的掺杂ZnO纳米粉体(<25 nm),并通过XRD,TEM,SAED,ICP-OES和BET表面积测量对其进行了表征。通过两步常规烧结将粉末固结成大于98%的致密颗粒。烧结样品显示出尖晶石,δ-Bi2O3,γ-Bi2O3和烧绿石相以及基质ZnO的形成。通过改变烧结温度来改变粒料的晶粒尺寸和密度。发现晶粒生长指数“ n”在3.5-4.0范围内,并且晶粒生长的活化能为304 +/- 10 kJ mol(-1),表明晶粒生长受体积和体积的支配。表面扩散机制。使用两种不同的技术研究了在不同烧结条件下制备的样品的电性能。对于在不同烧结条件下制得的颗粒,其击穿电压为14.38 kV cm(-1),非线性系数为171.69,漏电流密度为1.10μLA cm(-2)。观察到在较高温度下烧结的粒料产生较低的阻抗值。将高温(> 175摄氏度)阻抗数据拟合到两个并联的RC电路中,以计算压敏电阻的电性能。 (C)2015 Elsevier Ltd.保留所有权利。

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