• Journal of Advanced Dielectrics
  • Vol. 12, Issue 4, 2244001 (2022)
M. O. Moysa1、*, K. P. Andryushin1, A. V. Pavlenko2, S. P. Kubrin1, and L. A. Reznichenko1
Author Affiliations
  • 1Research Institute of Physics, Southern Federal University, 194 Stachki Avenue, 344090, Rostov-on-Don
  • 2Southern Scientific Centre, Russian Academy of Sciences, Chehov av., 41, 344000 Rostov-on-Don
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    DOI: 10.1142/S2010135X22440015 Cite this Article
    M. O. Moysa, K. P. Andryushin, A. V. Pavlenko, S. P. Kubrin, L. A. Reznichenko. Dielectric spectroscopy of solid solutions based on sodium–potassium–cadmium in the temperature range (10 ÷ 900) K[J]. Journal of Advanced Dielectrics, 2022, 12(4): 2244001 Copy Citation Text show less
    References

    [1] H. Kim, Y. Tadesse, S. Priya. Piezoelectric Energy Harvesting, Energy Harvesting Technologies(2009).

    [2] S. Priya. Advances in energy harvesting using low profile piezoelectric transducers. J. Electroceram., 19, 167(2007).

    [3] E. Hollenstein, D. Damjanovic, N. Setter. Temperature stability of the piezoelectric properties of Li-modified KNN ceramics. J. Eur. Ceram. Soc., 27, 4093(2007).

    [4] E. Cekas, G. Janusas, A. Guobiene, A. Palevicius, A. Vilkauskas, S. Urbaite. Design of controllable novel piezoelectric components for microfluidic applications. J. Sensors, 18, 4044(2018).

    [5] H. Wang, S. Xia, M. Ma, Z. Li. Anisotropic growth kinetics and electric properties of PZT-5H single crystal by solid-state crystal growth method. J. Am. Ceram. Soc., 105, 3238(2022).

    [6] J. Huang, M. Yao, J. Lin, X. Yao. Enhanced mechanical properties and excellent electrical properties of PZT piezoelectric ceramics modified by YSZ. J. Mater. Lett., 307, 131006(2022).

    [7] Directive 2002/95/EU of the European Parliament and of the Council of 27 January 2003 on the restriction of the use of certain hazardous substances in electronic equipment, Official J. Eur. Union.L. 37, 19 (2003).

    [8] Directive 2011/65/EU of the European Parliament and of the Council of 8 June 2011 on the restriction of the use of certain hazardous substances in electrical and electronic equipment, Official J. Eur. Union.L. 174, 88 (2011).

    [9] T. Zheng, J. Wu, D. Xiao, J. Zhu. Recent development in lead-free perovskite piezoelectric bulk materials. Prog. Mater. Sci., 98, 552(2018).

    [10] X. Lv, J. Zhu, D. Xiao, X. X. Zhang, J. Wu. Emerging new phase boundary in potassium sodium-niobate based ceramics. Chem. Soc. Rev., 49, 671(2020).

    [11] L. Egerton, D. M. Dillon. Piezoelectric and dielectric properties of ceramics in the system potassium—sodium niobate. J. Am. Ceram. Soc., 42, 438(1959).

    [12] N. Zhang, X. Lv, X.-X. Zhang, L. Jing, S.-W. Yang, J. Wu. Low-temperature dielectric relaxation associated with NbO6 octahedron distortion in antimony modified potassium sodium niobate ceramics. J. Mater. Sci. Technol., 115, 189(2022).

    [13] M. O. Moysa, A. V. Nagaenko, L. A. Shilkina, K. P. Andryushin, I. N. Andryushina, L. A. Reznichenko, D. I. Rudskiy, A. G. Rudskaya. The influence of the internal structure on the polarization properties of the solid solutions of the three-component system of the sodium–potassium–cadmium niobates. Ferroelectrics, 575, 64(2021). https://doi.org/10.1080/00150193.2021.1888228

    [14] K. Andryushin, L. Shilkina, I. Andryushina, A. Nagaenko, M. Moysa, S. Dudkina, L. Reznichenko. Features of the structure and electrophysical properties of solid solutions of the system (1 − x − y)NaNbO3–xKNbO3yCd0.5NbO3. Materials, 14, 4009(2021). https://doi.org/10.3390/ma14144009

    [15] M. O. Moysa, K. P. Andryushin, S. P. Kubrin, I. N. Andryushina, L. A. Reznichenko. Dielectric spectroscopy, piezoelectric and ferroelastic properties of solid solutions of the three-component system (1 − x − y) NaNbO3–xKNbO3–yCdNb2O6 in the temperature range (10-330) K. J. Phys. Conf. Ser., 1942, 012027(2021). https://doi.org/10.1088/1742-6596/1942/1/012027

    M. O. Moysa, K. P. Andryushin, A. V. Pavlenko, S. P. Kubrin, L. A. Reznichenko. Dielectric spectroscopy of solid solutions based on sodium–potassium–cadmium in the temperature range (10 ÷ 900) K[J]. Journal of Advanced Dielectrics, 2022, 12(4): 2244001
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