Effect of the synthesis conditions on the properties of polycrystalline films of lead zirconate titanate of nonstoichiometric composition

В. П. Афанасьев1, К. А. Воротилов2, Nikolay Mukhin1
1St. Petersburg State Electrotechnical University, ul. Prof. Popova 5, St. Petersburg, 197376, Russia
2Moscow State Technical University of Radio Engineering, Electronics, and Automation, pr. Vernadskogo 78, Moscow, 119454, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Physics of Ferroelectrics: A Modern Perspective, Rabe, K.M., Ahn, Ch.H., and Triscon, J.-M., Eds., Berlin: Springer, 2007.

Vorotilov, K.A., Mukhortov, V.M., and Sigov, A.S., Integrirovannye segnetoelektricheskie ustroistva (Integrated Ferroelectric Devices), Sigov, A.S., Ed., Moscow: Energoatomizdat, 2011.

Tagantsev, A.K., Stolichnov, I., Setter, N., and Cross, J.S., Nature of non-linear imprint in ferroelectric films and long-term prediction of polarization loss in ferroelectric memories, J. Appl. Phys., 2004, vol. 96, pp. 6616–6623.

Tagantsev, A.K. and Gerra, G., Interface-induced phenomena in polarization response of ferroelectric thin films, J. Appl. Phys., 2006, vol. 100, 051607.

Tentilova, I.Yu., Kukushkin, S.A., Kaptelov, E.Yu., et al., Peculiarities of crystallization of thin ferroelectric films of lead zirconate titanate, Tech. Phys. Lett., 2011, vol. 37, no. 2, pp. 163–165.

Pronin, V.P., Senkevich, S.V., Kaptelov, E.Yu., and Pronin, I.P., Anomalous losses of lead in crystallization of the perovskite phase in thin PZT films, Phys. Solid State, 2013, vol. 55, no. 1, pp. 105–108.

Sigov, A.S., Vorotilov, K.A., and Zhigalina, O.M., Effect of lead content on microstructure of sol–gel PZT structures, Ferroelectrics, 2012, vol. 433, no. 1, pp. 146–157.

Mukhin, N.V., Diffusion model of intrinsic defects in lead zirconate titanate films on heat treatment in air, Glass Phys. Chem., 2014, vol. 40, no. 2, pp. 238–242.

Petrov, A.A., Geterofaznye granitsy razdela v polikristallicheskikh plenkakh i strukturakh na ikh osnove (Heterophase Interface in Polycrystalline Films and Structures Based on Them), St. Petersburg: Insanta, 2008.

Golubchenko, N.V., Moshnikov, V.A., and Chesnokova, D.B., Investigation into the microstructure and phase composition of polycrystalline lead selenide films in the course of thermal oxidation, Glass Phys. Chem., 2006, vol. 32, no. 3, pp. 337–345.

Maraeva, E.V., Moshnikov, V.A., and Tairov, Yu.M., Models of the formation of oxide phases in nanostructured materials based on lead chalcogenides subjected to treatment in oxygen and iodine vapors, Semiconductors, 2013, vol. 47, no. 10, pp. 1422–1425.

Afanasjev, V.P., Petrov, A.A., Pronin, I.P., et al., Polarization and self-polarization in PZT thin films, J. Phys.: Condens. Matter, 2001, vol. 13, no. 39, pp. 8755–8763.

Kotova, N.M., Vorotilov, K.A., Seregin, D.S., and Sigov, A.S., Role of precursors in the formation of lead zirconate titanate thin films, Inorg. Mater., 2014, vol. 50, no. 6, pp. 612–616.

Afanas’ev, V.P. and Mukhin, N.V., Structure and properties of heterophase film PZT deposited by RF magne-tron sputtering, Vak. Tekh. Tekhnol., 2014, vol. 23, no. 1, pp. 133–134.

Lines, M.E. and Glass, A.M., Principles and Application of Ferroelectrics and Related Materials, Oxford: Clarendon, 1977.

Geguzin, Ya.E., Diffuzionnaya zona (Diffusion Zone), Moscow: Nauka, 1979.

Sanjeev, A. and Ramesh, R., Point defect chemistry of metal oxide heterostructures, Annu. Rev. Mater. Res., 1998, vol. 28, pp. 463–499.

Prisedskii, V.V., Nestekhiometricheskie segnetoelektriki AIIVIVO3 (Nonstoichiometric Ferroelectric AIIVIVO3), Donetsk: Noulidzh, 2011.

Kroger, F.A., The Chemistry of Imperfect Crystals, New York: Wiley, 1964.

Aleksandrova, O.A., Maksimov, A.I., Moshnikov, V.A., and Chesnokova, D.B., Khal’kogenidy i oksidy elementov IV gruppy. Poluchenie, issledovanie, primenenie (Chalcogenides and Oxides of IV Group Elements: Obtaining, Investigation, and Application), Moshnikov, V.A., Ed., St. Petersburg: Tekhnolit, 2008.

Zakis, Yu.R., Kantorovich, L.N., Kotomin, E.A., et al., Modeli protsessov v shirokoshchelevykh tverdykh telakh s defektami (Model Processes in Wide-Slotted Solids with Defects), Riga: Znanie, 1991.