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Y. Saito, H. Takao, T. Tani, T. Nonoyama, K. Takatori, T. Homma, Toshiatsu Nagaya, Masaya Nakamura (2004)
Lead-free piezoceramicsNature, 432
M. Ahart, M. Somayazulu, R. Cohen, Panchapakesan Ganesh, P. Dera, H. Mao, R. Hemley, Yang Ren, P. Liermann, Zhigang Wu (2008)
Origin of morphotropic phase boundaries in ferroelectricsNature, 451
Ke Wang, Fang-Zhou Yao, W. Jo, D. Gobeljic, V. Shvartsman, D. Lupascu, Jingfeng Li, J. Rödel (2013)
Temperature‐Insensitive (K,Na)NbO3‐Based Lead‐Free Piezoactuator CeramicsAdvanced Functional Materials, 23
Qin Zhou, Changrong Zhou, Huabin Yang, Guohua Chen, Weizhou Li, Hua Wang (2012)
Dielectric, Ferroelectric, and Piezoelectric Properties of Bi(Ni1/2Ti1/2)O3‐Modified BiFeO3–BaTiO3 Ceramics with High Curie TemperatureJournal of the American Ceramic Society, 95
S. Leontsev, R. Eitel (2010)
Progress in engineering high strain lead-free piezoelectric ceramicsScience and Technology of Advanced Materials, 11
Xiaopeng Wang, Jiagang Wu, X. Lv, Hong Tao, Xiaojing Cheng, Ting Zheng, Binyu Zhang, D. Xiao, Jianguo Zhu (2014)
Phase structure, piezoelectric properties, and stability of new K0.48Na0.52NbO3–Bi0.5Ag0.5ZrO3 lead-free ceramicsJournal of Materials Science: Materials in Electronics, 25
D. Keeble, E. Barney, D. Keen, M. Tucker, J. Kreisel, P. Thomas (2013)
Bifurcated Polarization Rotation in Bismuth‐Based PiezoelectricsAdvanced Functional Materials, 23
Dunmin Lin, K. Kwok, H. Chan (2008)
Structure and electrical properties of Bi0.5Na0.5TiO3-BaTiO3-Bi0.5Li0.5TiO3 lead-free piezoelectric ceramicsSolid State Ionics, 178
P. Mandal, A. Manjón-Sanz, Alex Corkett, T. Comyn, K. Dawson, T. Stevenson, J. Bennett, L. Henrichs, A. Bell, E. Nishibori, M. Takata, M. Zanella, M. Dolgos, U. Adem, X. Wan, M. Pitcher, S. Romani, T. Tran, P. Halasyamani, J. Claridge, M. Rosseinsky (2015)
Morphotropic Phase Boundary in the Pb‐Free (1 − x)BiTi3/8Fe2/8Mg3/8O3–xCaTiO3 System: Tetragonal Polarization and Enhanced Electromechanical PropertiesAdvanced Materials, 27
S. Yasui, K. Yazawa, M. Matsushima, Tomoaki Yamada, H. Morioka, H. Uchida, T. Iijima, L. You, Junling Wang, Takahisa Yamamoto, Y. Ikuhara, H. Funakubo (2013)
Unusual 90° domain structure in (2/3)Bi(Zn1/2Ti1/2)O3-(1/3)BiFeO3 epitaxial films with giant 22% tetragonal distortionApplied Physics Letters, 103
Anar Singh, C. Moriyoshi, Y. Kuroiwa, D. Pandey (2013)
Evidence for local monoclinic structure, polarization rotation, and morphotropic phase transitions in ( 1 − x ) BiFeO 3 - x BaTiO 3 solid solutions: A high-energy synchrotron x-ray powder diffraction studyPhysical Review B, 88
Wenchao Wang, Xuan-yi Yuan, Chaoyang Ma, F. Tang, Fangyu Wang, Yongge Cao (2015)
Investigation on the phase transition behavior and electrical properties of textured Lix(K0.48Na0.52)1−xNbO3 piezoelectric ceramicsCeramics International, 41
Xiaopeng Wang, Jiagang Wu, D. Xiao, Xiaojing Cheng, Ting Zheng, X. Lou, Binyu Zhang, Jianguo Zhu (2014)
New potassium-sodium niobate ceramics with a giant d33.ACS applied materials & interfaces, 6 9
Ruyan Guo, L. Cross, Seung-Eek Park, Beatriz Noheda, Beatriz Noheda, D. Cox, G. Shirane (1999)
Origin of the high piezoelectric response in PbZr1-xTixO3Physical review letters, 84 23
R. Zuo, ChunChun Ye (2007)
Structures and piezoelectric properties of (NaKLi)1−x(BiNaBa)xNb1−xTixO3 lead-free ceramicsApplied Physics Letters, 91
S. Leontsev, R. Eitel (2009)
Dielectric and Piezoelectric Properties in Mn‐Modified (1−x)BiFeO3–xBaTiO3 CeramicsJournal of the American Ceramic Society, 92
R. Palai, R. Katiyar, H. Schmid, P. Tissot, S. Clark, J. Robertson, S. Redfern, G. Catalán, J. Scott (2008)
beta phase and gamma-beta metal-insulator transition in multiferroic BiFeO[sub 3]Physical Review B
Yunfei Chang, Zupei Yang, Difei Ma, Zonghuai Liu, Zengling Wang (2008)
Phase transitional behavior, microstructure, and electrical properties in Ta-modified [(K0.458Na0.542)0.96Li0.04] NbO3 lead-free piezoelectric ceramicsJournal of Applied Physics, 104
Wenfeng Liu, X. Ren (2009)
Large piezoelectric effect in Pb-free ceramics.Physical review letters, 103 25
Huabin Yang, Changrong Zhou, Xinyu Liu, Qin Zhou, Guohua Chen, Weizhou Li, Hua Wang (2013)
Piezoelectric properties and temperature stabilities of Mn- and Cu-modified BiFeO3–BaTiO3 high temperature ceramicsJournal of The European Ceramic Society, 33
T. Comyn, S. McBride, A. Bell (2004)
Processing and electrical properties of BiFeO3-PbTiO3 ceramicsMaterials Letters, 58
Mahesh Kumar, V. Palkar, K. Srinivas, S. Suryanarayana (2000)
Ferroelectricity in a pure BiFeO3 ceramicApplied Physics Letters, 76
Xiaopeng Wang, Jiagang Wu, D. Xiao, Jianguo Zhu, Xiaojing Cheng, Ting Zheng, Binyu Zhang, X. Lou, Xiangjian Wang (2014)
Giant piezoelectricity in potassium-sodium niobate lead-free ceramics.Journal of the American Chemical Society, 136 7
S. Selbach, M. Einarsrud, T. Grande (2009)
On the Thermodynamic Stability of BiFeO3Chemistry of Materials, 21
Jeong Jeong, Lee Lee, Han Han, Ryu Ryu, Hwang Hwang, Park Park, Park Park, Lee Lee, Byun Byun, Ko Ko, Lee Lee (2015)
Piezoelectric CeramicsAdv. Mater., 27
K. Lalitha, A. Fitch, R. Ranjan (2013)
Correlation between enhanced lattice polarizability and high piezoelectric response in BiScO 3 -PbTiO 3Physical Review B, 87
Ke Wang, Jingfeng Li (2010)
Domain Engineering of Lead‐Free Li‐Modified (K,Na)NbO3 Polycrystals with Highly Enhanced PiezoelectricityAdvanced Functional Materials, 20
H. Takahashi, Y. Numamoto, J. Tani, Kazuya Matsuta, J. Qiu, S. Tsurekawa (2005)
Lead-Free Barium Titanate Ceramics with Large Piezoelectric Constant Fabricated by Microwave SinteringJapanese Journal of Applied Physics, 45
R. Eitel, C. Randall, T. Shrout, P. Rehrig, W. Hackenberger, Seung-Eek Park (2001)
New High Temperature Morphotropic Phase Boundary Piezoelectrics Based on Bi(Me)O3–PbTiO3 CeramicsJapanese Journal of Applied Physics, 40
Longlong Fan, Jun Chen, Sha Li, Huajun Kang, Laijun Liu, L. Fang, X. Xing (2013)
Enhanced piezoelectric and ferroelectric properties in the BaZrO3 substituted BiFeO3-PbTiO3Applied Physics Letters, 102
Dragan Damjanovic, F. Brem, N. Setter (2002)
Crystal orientation dependence of the piezoelectric d33 coefficient in tetragonal BaTiO3 as a function of temperatureApplied Physics Letters, 80
Ke Wang, Jingfeng Li, Nan Liu (2008)
Piezoelectric properties of low-temperature sintered Li-modified (Na, K)NbO3 lead-free ceramicsApplied Physics Letters, 93
S. Zhang, M. Lu, D. Wu, Y. Chen, N. Ming (2005)
Larger polarization and weak ferromagnetism in quenched BiFeO3 ceramics with a distorted rhombohedral crystal structureApplied Physics Letters, 87
A. Belik, D. Rusakov, T. Furubayashi, E. Takayama-Muromachi (2012)
BiGaO3-Based Perovskites: A Large Family of Polar MaterialsChemistry of Materials, 24
J. Rödel, K. Webber, R. Dittmer, W. Jo, M. Kimura, Dragan Damjanovic (2015)
Transferring lead-free piezoelectric ceramics into applicationJournal of The European Ceramic Society, 35
Chang Jeong, Jinhwan Lee, Seungyong Han, J. Ryu, Geon‐Tae Hwang, Dae Park, Jung Park, Seung Lee, M. Byun, Seung Ko, K. Lee (2015)
A Hyper‐Stretchable Elastic‐Composite Energy HarvesterAdvanced Materials, 27
Jiagang Wu, D. Xiao, Jianguo Zhu (2015)
Potassium-sodium niobate lead-free piezoelectric materials: past, present, and future of phase boundaries.Chemical reviews, 115 7
T. Rojac, M. Kosec, B. Budic, N. Setter, Dragan Damjanovic (2010)
Strong ferroelectric domain-wall pinning in BiFeO3 ceramicsJournal of Applied Physics, 108
G. Catalán, J. Scott (2009)
Physics and Applications of Bismuth FerriteAdvanced Materials, 21
J. Rödel, W. Jo, Klaus Seifert, E. Anton, T. Granzow, Dragan Damjanovic (2009)
Perspective on the Development of Lead‐free PiezoceramicsJournal of the American Ceramic Society, 92
S. Wada, K. Takeda, T. Muraishi, H. Kakemoto, T. Tsurumi, T. Kimura (2008)
Domain Wall Engineering in Lead-Free Piezoelectric Grain-Oriented CeramicsFerroelectrics, 373
D. Almond, B. Chapman, G. Saunders (1988)
The properties of quenched Bi-Ca-Sr-Cu oxide superconductorsSuperconductor Science and Technology, 1
S. Priya, S. Nahm (2012)
Lead-free piezoelectrics
Hailong Zhang, W. Jo, Ke Wang, K. Webber (2014)
Compositional dependence of dielectric and ferroelectric properties in BiFeO3–BaTiO3 solid solutionsCeramics International, 40
Xiaojing Cheng, Jiagang Wu, Xiaopeng Wang, Binyu Zhang, Jianguo Zhu, D. Xiao, Xiangjian Wang, X. Lou (2014)
New lead-free piezoelectric ceramics based on (K0.48Na0.52)(Nb0.95Ta0.05)O3-Bi0.5(Na0.7K0.2Li0.1)0.5ZrO3.Dalton transactions, 43 9
T. Rojac, A. Benčan, B. Malič, G. Tutuncu, Jacob Jones, J. Daniels, Dragan Damjanovic (2014)
BiFeO3 Ceramics: Processing, Electrical, and Electromechanical PropertiesJournal of the American Ceramic Society, 97
M. Suchomel, P. Davies (2004)
Predicting the position of the morphotropic phase boundary in high temperature PbTiO3-Bi(B′B″)O3 based dielectric ceramicsJournal of Applied Physics, 96
T. Karaki, K. Yan, M. Adachi (2007)
Barium Titanate Piezoelectric Ceramics Manufactured by Two-Step SinteringJapanese Journal of Applied Physics, 46
Mahesh Kumar, A. Srinivas, S. Suryanarayana (2000)
Structure property relations in BiFeO3/BaTiO3 solid solutionsJournal of Applied Physics, 87
R. Zeches, M. Rossell, Jinxing Zhang, A. Hatt, Qing He, Chan-Ho Yang, Ajay Kumar, C. Wang, A. Melville, A. Melville, C. Adamo, C. Adamo, G. Sheng, Y. Chu, J. Ihlefeld, J. Ihlefeld, R. Erni, C. Ederer, V. Gopalan, Long-Qing Chen, D. Schlom, N. Spaldin, L. Martin, L. Martin, R. Ramesh (2009)
A Strain-Driven Morphotropic Phase Boundary in BiFeO3Science, 326
A bismuth ferrite and barium titanate solid solution compound can achieve good piezoelectric properties with a high Curie temperature when fabricated with low‐temperature sintering followed by a water‐quenching process, with no complicated grain alignment processes performed. By adding the super‐tetragonal bismuth gallium oxide to the compound, the piezoelectric properties are as good as those of lead zirconate titanate ceramics.
Advanced Materials – Wiley
Published: Nov 1, 2015
Keywords: ; ; ;
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