journals.iop.org home page electronic journals * User guide   * Site map   | Quick Search:Help  
Chinese Physics Letters
Athens/Institutional login
IOP login: Password:   
Create account | Alerts | Contact us
Journals Home | Journals List | EJs Extra | This Journal | Search | Authors | Referees | Librarians | User Options | Help |

CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES

Improvement in Dielectric Tunability of Ba0.6Sr0.4TiO4-Mg2TiO4 Composite Ceramics via Heterogeneous Nucleation Processing

Wang Zhuo et al 2009 Chinese Phys. Lett. 26 117701 (4pp)   doi: 10.1088/0256-307X/26/11/117701  Help

   PDF (660 KB) | References

Wang Zhuo1,2 and Li Yong-Xiang1
1 The State Key Lab of High Performance Ceramics and Superfine Microstructures, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050
2 Graduate School of the Chinese Academy of Sciences, Beijing 100049
E-mail: wangzhuo@mail.sic.ac.cn (Wang Zhuo) and yxli@mail.sic.ac.cn (Li Yong-Xiang)

Abstract. Dielectric tunable composite ceramics Ba0.6Sr0.4 TiO3-Mg2TiO4 (BST-MT) are prepared with a heterogeneous nucleation sol-gel approach. The Mg2TiO4 powders are synthesized by the conventional solid-state reaction method. The micro-sized MT powders with dispersant Ciba-4010 are introduced into Ba-Sr-Ti sol to obtain uniform and homogeneous mixture compounds with nano-sized BST particles synthesized via heterogeneous nucleation (HN) in the sol-gel process. Thus, the microstructural and dielectric properties can be tailored. The dielectric constants of BST-MT composite ceramics can be adjusted in a large range from 294 to 1790, and the dielectric tunability can be adjusted from 29.4% to 37.0% with different MT contents from 60 wt% to 20 wt%. Compared to the samples prepared by the conventional solid-state (SS) process, the BST-MT composite ceramics by the heterogeneous nucleation sol-gel process exhibit a more uniform microstructure, and improve dielectric properties.

PACS numbers: 77.22.−d, 77.22.Ch, 77.84.Dy

Print publication: Issue 11 (November 2009)
Received 10 April 2009

Bookmark and Share Post to CiteUlike | Post to Connotea | Post to Bibsonomy

 

Find related articles





Article options

Authors & Referees

Nanotechnology news and resourcesPW launch banner
 
Content finder
  Full Search
  Help


  
Setup information is available for Adobe Acrobat.
EndNote, ProCite ® and Reference Manager ® are registered trademarks of ISI Researchsoft.
Copyright © Institute of Physics and IOP Publishing Limited 2009.
Use of this service is subject to compliance with the Terms and Conditions of use. In particular, reselling and systematic downloading of files is prohibited.
Help: Cookies | Data Protection. Privacy policy Disclaimer
 
Bioinspiration and Biomimetics reasearch banner