lindazhang分享 http://blog.sciencenet.cn/u/张丽英

博文

NML最新接收1

已有 1905 次阅读 2016-4-1 15:55 |个人分类:期刊相关|系统分类:论文交流| 纳米技术, NML, CCTO

Review

Nano-Micro Letters

pp 1-21

First online: 30 March 2016

A Short Review on Copper Calcium Titanate (CCTO) Electroceramic: Synthesis, Dielectric Properties, Film Deposition, and Sensing Application


  • Mohsen Ahmadipour

  • , Mohd Fadzil Ain

  • , Zainal Arifin Ahmad 

10.1007/s40820-016-0089-1

Abstract

Electroceramic calcium copper titanates (CaCu3Ti4O12, CCTO), with high dielectric permittivities (ε) of approximately 105 and 104, respectively, for single crystal and bulk materials, are produced for a number of well-established and emerging applications such as resonator, capacitor, and sensor. These applications take advantage of the unique properties achieved through the structure and properties of CCTO. This review comprehensively focuses on the primary processing routes, effect of impurity, dielectric permittivity, and deposition technique used for the processing of electroceramics along with their chemical composition and micro and nanostructures. Emphasis is given to versatile and basic approaches that allow one to control the microstructural features that ultimately determine the properties of the CCTO ceramic. Despite the intensive research in this area, none of the studies available in the literature provides all the possible relevant information about CCTO fabrication, structure, the factors influencing its dielectric properties, CCTO immobilization, and sensing applications.

Keywords

CCTO Chemical synthesis Dielectric permittivity Loss factor Deposition Sensitivity







https://blog.sciencenet.cn/blog-5195-967273.html

上一篇:2016年第二期最新接收1
下一篇:NML最新接收4:
收藏 IP: 183.195.251.*| 热度|

0

该博文允许注册用户评论 请点击登录 评论 (0 个评论)

数据加载中...

Archiver|手机版|科学网 ( 京ICP备07017567号-12 )

GMT+8, 2024-4-23 21:57

Powered by ScienceNet.cn

Copyright © 2007- 中国科学报社

返回顶部