...
首页> 外文期刊>Journal of the European Ceramic Society >SnO_2, ZnO and related poly crystalline compound semiconductors: An overview and review on the voltage-dependent resistance (non-ohmic) feature
【24h】

SnO_2, ZnO and related poly crystalline compound semiconductors: An overview and review on the voltage-dependent resistance (non-ohmic) feature

机译:SnO_2,ZnO和相关的多晶化合物半导体:电压依赖性电阻(非欧姆)特性的概述和评论

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The present review describes mainly the history of SnO_2-based voltage-dependent resistors, discusses the main characteristics of these polycrys-talline semiconductor systems and includes a direct comparison with traditional ZnO-based voltage-dependent resistor systems to establish the differences and similarities, giving details of the basic physical principles involved with the non-ohmic properties in both polycrystalline systems. As an overview, the text also undertakes the main difficulties involved in processing SnO_2- and ZnO-based non-ohmic systems, with an evaluation of the contribution of the dopants to the electronic properties and to the final microstructure and consequently to the system's non-ohmic behavior. However, since there are at least two review texts regarding ZnO-based systems [Levinson, L. M., and Philipp, H. R. Ceramic Bulletin 1985;64:639; Clarke, D. R. Journal of American Ceramic Society 1999;82:485], the main focus of the present text is dedicated to the SnO_2-based varistor systems, although the basic physical principles described in the text are universally useful in the context of dense polycrystalline devices. However, the readers must be careful of how the microstructure heterogeneity and grain-boundary chemistry are capable to interfere in the global electrical response for particular systems. New perspectives for applications, commercialization and degradation studies involving SnO2-based polycrystalline non-ohmic systems are also outlined, including recent technological developments. Finally, at the end of this review a brief section is particularly dedicated to the presentation and discussions about others emerging non-ohmic polycrystalline ceramic devices (particularly based on perovskite ceramics) which must be deeply studied in the years to come, specially because some of these systems present combined high dielectric and non-ohmic properties. From both scientific and technological point of view these perovskite systems are quite interesting.
机译:本综述主要描述了基于SnO_2的电压依赖性电阻器的历史,讨论了这些多晶-talline半导体系统的主要特性,并包括与传统的基于ZnO的电压依赖性电阻器系统的直接比较,以建立差异和相似性,从而给出两个多晶系统中非欧姆特性涉及的基本物理原理的详细信息。作为概述,本文还处理了基于SnO_2和ZnO的非欧姆体系的加工过程中的主要困难,评估了掺杂剂对电子性能和最终微观结构的贡献,从而对体系的非结晶性做出了贡献。欧姆行为。但是,由于至少有两篇有关基于ZnO的系统的评论文章[Levinson,L. M.和Philipp,H. R. Ceramic Bulletin 1985; 64:639; Clarke,DR,《美国陶瓷学会杂志》,1999; 82:485],本文的主要重点是基于SnO_2的压敏电阻系统,尽管本文中描述的基本物理原理在致密多晶情况下普遍有用。设备。但是,读者必须注意微观结构的异质性和晶界化学如何影响特定系统的整体电响应。还概述了涉及基于SnO2的多晶非欧姆体系的应用,商业化和降解研究的新观点,包括最近的技术发展。最后,在本评论的最后,有一个简短的章节专门介绍和讨论了其他新兴的非欧姆多晶陶瓷器件(特别是基于钙钛矿陶瓷的器件),这些器件必须在未来几年中进行深入研究,特别是因为某些这些系统具有高介电性能和非欧姆性能。从科学和技术的角度来看,这些钙钛矿体系都是非常有趣的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号