The thermally stimulated current in zinc oxide varistors with TiO/sub 2/ additives

Joon-Ung Lee, Kyung-Ook Chang, Choon-Bae Park, S. Grzybowski
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Abstract

To contribute more information on the conduction mechanism in ZnO varistors, a study of ZnO varistors with TiO/sub 2/ additives was conducted. The properties of ZnO varistors are found to depend on the grain structure of ZnO. The mechanism of nonlinear conduction of ZnO may be explained on the basis of the grain structure. The TSC (thermally stimulated current) spectrum was measured to study the trapped carriers in ZnO varistors. Four peaks of TSC may be distinguished on the spectrum of TSC. The origin of the first, second, and third TSC peaks was attributed to the detrapping of the trapped electrons in the shallow trap, donor level, and deep trap, respectively. The origin of the fourth peak was attributed to the process of depolarization of the donor ions in the depleted layer. Adding TiO/sub 2/ to ZnO varistors caused the leakage current to increase.<>
氧化锌压敏电阻器中TiO/sub /添加剂的热刺激电流
为了进一步研究ZnO压敏电阻器的传导机理,对ZnO压敏电阻器进行了TiO/ sub2 /添加剂的研究。ZnO压敏电阻的性能与ZnO的晶粒结构有关。ZnO的非线性导电机理可以从晶粒结构的角度来解释。通过测量TSC(热激电流)谱来研究ZnO压敏电阻器中的捕获载流子。在TSC光谱上可以区分出四个TSC峰。第一、第二和第三个TSC峰的起源分别归因于浅阱、给体能级和深阱中被困电子的脱陷。第四个峰的起源归因于贫层中供体离子的去极化过程。在ZnO压敏电阻器中加入TiO/sub /可使漏电流增大
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