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钛酸钡 -(0.5 钠 0.5 钬)钛酸钡多功能铁电陶瓷中的大电致应变和高光温度敏感性

Large electrostrain and high optical temperature sensitivity in BaTiO3-(Na0.5Ho0.5)TiO3 multifunctional ferroelectric ceramics.

作者信息

Li Jun, Chai Xiaona, Wang Xusheng, Xu Chao-Nan, Gu Yihao, Zhao Haifeng, Yao Xi

机构信息

Key Laboratory of Advanced Civil Engineering Materials of the Ministry of Education, Functional Materials Research Laboratory, School of Materials Science and Engineering, Tongji University, 4800 Cao'an Road, Shanghai 201804, China.

出版信息

Dalton Trans. 2016 Aug 7;45(29):11733-41. doi: 10.1039/c6dt01424k. Epub 2016 May 31.

Abstract

Ferroelectric (1 -x)BaTiO3-x(Na0.5Ho0.5)TiO3 ceramics with ferroelectric and up-conversion luminescent multifunctions were designed and fabricated by a solid state reaction process. Their structure, ferroelectric, piezoelectric, up-conversion photoluminescence and relative optical temperature sensing properties were investigated systematically. Crystal structure analysis and Rietveld refinements based on the powder X-ray diffraction data show that the ceramics crystallized in the tetragonal perovskite space group P4mm at room temperature. Enhanced electrical properties and strong green up-conversion luminescence with thermally coupled green emission bands centered at 523 and 553 nm were observed. For a typical sample x equals 0.05, a large electrostrain of 0.279% was obtained under a 70 kV cm(-1) electric field that is comparable to that of the PZT4. Meanwhile, the excellent optical temperature sensitivity (0.0063 K(-1) at 480 K) is higher than that of Er-doped BaTiO3 nanocrystal materials. The results suggest that the BaTiO3-(Na0.5Ho0.5)TiO3 material should be an attractive material for piezoelectric actuator and temperature sensing device applications.

摘要

通过固相反应法设计并制备了具有铁电和上转换发光多功能的铁电(1 -x)BaTiO3-x(Na0.5Ho0.5)TiO3陶瓷。系统研究了它们的结构、铁电、压电、上转换光致发光和相对光学温度传感特性。基于粉末X射线衍射数据的晶体结构分析和Rietveld精修表明,该陶瓷在室温下结晶于四方钙钛矿空间群P4mm。观察到其电学性能增强,并且在523和553 nm处有以热耦合绿色发射带为中心的强绿色上转换发光。对于典型样品x等于0.05,在70 kV cm(-1)的电场下获得了0.279%的大电致应变,这与PZT4相当。同时,其优异的光学温度灵敏度(在480 K时为0.0063 K(-1))高于掺铒BaTiO3纳米晶体材料。结果表明,BaTiO3-(Na0.5Ho0.5)TiO3材料对于压电致动器和温度传感装置应用应是一种有吸引力的材料。

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