Dielectric properties and device performance of (Pb0.7 Dy0.15 Bi0.15)(Fe0.3Ti0.7)O3 electronic material
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s41779-020-00506-9.pdf
Reference37 articles.
1. Qing-Xin, S., Kirby, P., Komuro, E., Imura, M., Zhang, Q., Whatmore, R.: Thin-film bulk acoustic resonators and filters using ZnO and lead-zirconium-titanate thin films. IEEE Trans. Microw. Theory. Tech. 49, 769 (2001)
2. Muralt, P., Kohli, M., Maeder, T., Kholkin, A., Brooks, K.: Fabrication and characterization of PZT thin-film vibrators for micromotors. Sensors Actuators A. 48, 87 (1995)
3. Tripathy, A., Pramanik, S., Manna, A., Bhuyan, S., Shah, A., Farhana, N., Radzi, Z., Osman, N.A.A.: Design and Development for Capacitive Humidity Sensor Applications of Lead-Free Ca,Mg,Fe,Ti-Oxides-Based Electro-Ceramics with Improved Sensing Properties via Physisorption. Sensors. 16, 1135 (2016)
4. Dutta, S., Pandey, A., Yadav, I., Thakur, O.P., Laishram, R., Pal, R., Chatterjee, R.: Improved electrical properties of PbZrTiO3/BiFeO3 multilayers with ZnO buffer layer. J. Appl. Phys. 112, 084101 (2012)
5. Li, F., Lin, D., Chen, Z., Cheng, Z., et al.: Ultrahigh piezoelectricity in ferroelectric ceramics by design. Nat. Mater. 17, 349–354 (2018)
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