Jing-Feng Li

Lead-Free Piezoelectric Materials


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Moreau, J.M., Michel, C., Gerson, R., and James, W.J. (1971). Ferroelectric BiFeO3 X‐ray and neutron diffraction study. Journal of Physics and Chemistry of Solids 32: 1315.

      46 46 Catalan, G. and Scott, J.F. (2009). Physics and applications of bismuth ferrite. Advanced Materials 21: 2463.

      47 47 Ramesh, R. and Spaldin, N.A. (2007). Multiferroics: progress and prospects in thin films. Nature Materials 6: 21–29.

      48 48 Sun, W., Zhou, Z., Luo, J. et al. (2017). Leakage current characteristics and Sm/Ti doping effect in BiFeO3 thin films on silicon wafers. Journal of Applied Physics 121: 064101.

      49 49 Rojac, T., Bencan, A., Malic, B. et al. (2014). BiFeO3 ceramics: processing, electrical, and electromechanical properties. Journal of the American Ceramic Society 97 (7): 1993–2011.

      50 50 Fujino, S., Murakami, M., Anbusathaiah, V. et al. (2008). Combinatorial discovery of a lead‐free morphotropic phase boundary in a thin‐film piezoelectric perovskite. Applied Physics Letters 92: 202904.

      51 51 Zheng, T. and Wu, J.G. (2015). Enhanced piezoelectric activity in high‐temperature Bi1−x−ySmxLayFeO3 lead‐free ceramics. Journal of Materials Chemistry 3: 3684–3693.

      52 52 Lee, M.H., Kim, D.J., Park, J.S. et al. (2015). High‐performance lead‐free piezoceramics with high curie temperatures. Advanced Materials 27: 6976–6982.

      53 53 Chen, J.‐Y., Zhang, B.‐P., Zhu, L.‐F. et al. (2018). Enhanced insulation resistance and electrical properties of BiFe1−x(Zn0.5Ti0.5)xO3–BaTiO3 lead‐free piezoceramics. Ceramics International 44: 8409–8416.

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