Improvement of Piezoelectricity of (Bi0.5Na0.5)0.94Ba0.06TiO3 Ceramics Modified by a Combination of Porosity and Sm3+ Doping

被引:5
|
作者
Xia, Siyu [1 ]
Du, Huiling [1 ]
Li, Zhuo [1 ]
Zhao, Fan [1 ]
Li, Qianqian [1 ]
Hu, Yuxuan [1 ]
Kang, Le [1 ]
机构
[1] Xian Univ Sci & Technol, Coll Mat Sci & Engn, Xian 710054, Peoples R China
基金
中国国家自然科学基金;
关键词
(Bi0 5Na0 5)(0 94)Ba0 06TiO3; porous ceramics; Sm3+ doping; piezoelectric properties; ELECTRICAL-PROPERTIES; DIELECTRIC-PROPERTIES; LEAD; BATIO3; TEMPERATURE; MICROSTRUCTURE; STABILITY;
D O I
10.3390/coatings13040805
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Porous lead-free piezoelectric ceramics are characterized by their environment-friendly, light weight, and large specific surface area. The optimization of porous Na0.5Bi0.5TiO3-based lead-free piezoelectric ceramics can improve piezoelectric properties, enhance force-electric coupling characteristics, and effectively promote energy conversion, expanding the application in force-electric coupling devices. This study aimed to prepare [Sm-x(Bi0.5Na0.5)(1-3x/2)](0.94)Ba0.06TiO3 (x = 0, 0.01, 0.02, 0.03, 0.04) lead-free ceramics with porous structures, resulting in the piezoelectric constant d(33) = 131 pC/N and the plane electromechanical coupling coefficient k(p) = 0.213 at x = 0.01. The presence of pores in lead-free ceramics has a direct impact on the domain structure and can cause the depolarization process to relax. Then, the soft doping of Sm3+ makes the A-site ion in porous (Bi0.5Na0.5)(0.94)Ba0.06TiO3 ceramics occupancy inhomogeneous and generates cation vacancies, which induces lattice distortion and makes the domain wall motion easier, resulting in the improvement of piezoelectric properties and electromechanical coupling parameters. Furthermore, the piezoelectric oscillator exhibits greater resistance to resonant coupling in the radial extension vibration mode. These results infer that a combination of porosity and Sm3+ doping renders (Bi0.5Na0.5)(0.94)Ba0.06TiO3 ceramics base material for piezoelectric resonators, providing a scientific basis for their application in force-electric coupling devices, such as piezoelectric resonant gas sensors.
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页数:12
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