钪酸铋基压电材料因其优异的性能及高的居里温度,近年来受到各国学者的极大关注.结合近年来有关高温压电材料(居里温度Tc>400℃)的研究,归纳并分析了钪酸铋基高温压电材料的研究与进展,着重介绍了钪酸铋基高温压电材料的主要体系和制备方法,以及这些体系的压电铁电性能;此外,还对钪酸铋基高温压电材料今后的研究和发展提出了一些建议.
参考文献
[1] | Saito Yasuyoshi;Takao Hisaaki;Tani Toshihiko et al.[J].NATURE,2004,432:84. |
[2] | Turner R C;Fuierer P A;Newnham R E et al.[J].Applied Acoustics,1994,41(04):299. |
[3] | 张福学;王丽坤.现代压电学[M].北京:科学出版社,2000 |
[4] | 张沛霖;钟维烈;陈守六.压电材料与器件物理[M].济南:山东科学技术出版社,1996 |
[5] | 赁墩敏;肖定全;朱建国 等.[J].功能材料,2003,34:491. |
[6] | Ichiki M;Zhang L;Tanaka M et al.[J].Journal of the European Ceramic Society,2004,24:1693. |
[7] | Wang Ruiping;Xie Rongjun;Sekiya Tadashi et al.[J].Japanese Journal of Applied Physics,2002,41(11B):7119. |
[8] | Eitel Richard E;Randall Clive A;Shrout Thomas R et al.[J].Japanese Journal of Applied Physics,2001,40(10):5999. |
[9] | Zhang Shujun;Lebrun Laurent;Rhee Sorah et al.[J].Journal of Crystal Growth,2002,236:210. |
[10] | Zhang Shujun;Randall Clive A;Shrout Thomas R .[J].Journal of Applied Physics,2004,95(08):4291. |
[11] | Zhang Shujun;Randall Clive A;Shrout Thomas R .[J].Japanese Journal of Applied Physics,2004,43(9A):6199. |
[12] | Zhang Shujun;Jeong D Y;Zhang Qiming et al.[J].Journal of Crystal Growth,2003,247:131. |
[13] | Eitel Richard E;Zhang Shujun;Shrout Thomas R et al.[J].Journal of Applied Physics,2004,96(05):2828. |
[14] | Zhang Shujun;Eitel Richard E;Randall Clive A et al.[J].Applied Physics Letters,2005,86:262904. |
[15] | Sterianou I;Reaney I M;Sinclair D C et al.[J].Applied Physics Letters,2005,87:242901. |
[16] | Takeshi Yoshimura;Susan Trolier-McKinstry .[J].Applied Physics Letters,2002,81(11):2065. |
[17] | Wen Hai;Wang Xiaohui;Deng Xiangyun et al.[J].Applied Physics Letters,2006,88:222904. |
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