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Original Articles

Isomorphous ion substitutions and order-disorder phenomena in highly electrocaloric lead-scandium tantalate solid solutions

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Pages 239-242 | Received 03 Jul 1995, Accepted 30 Oct 1995, Published online: 26 Oct 2011

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Read on this site (5)

E. Birks, M. Dunce & A. Sternberg. (2010) High Electrocaloric Effect in Ferroelectrics. Ferroelectrics 400:1, pages 336-343.
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V.V. Shvartsman, S.E. Aksenov & E.D. Politova. (2001) Phase relations and ferroelectric properties of Pb(Zr, Sn, Ti)O3 ceramics. Ferroelectrics 258:1, pages 13-20.
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Xiao Dingquan. (1999) Environmentally conscious ferroelectrics research—present and prospect. Ferroelectrics 231:1, pages 133-141.
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A. Sternberg, E. Birks, L. Shebanovs, E. Klotins, M. Ozolinsh, M. Tyunina, V. Zauls & M. Kundzinsh. (1999) Phase transitions and properties of perovskite ferroelectric ceramics and films for certain applications. Ferroelectrics 226:1, pages 217-241.
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A. Sternberg, L. Shebanovs, E. Birks, Y. Yamashita, M. Tyunina & V. Zauls. (1998) Effects of structure ordering, structure defects and external conditions on properties of complex ferroelectric perovskites. Ferroelectrics 217:1, pages 307-317.
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Articles from other publishers (13)

A. A. Bush, A. I. Stash & S. A. Ivanov. (2023) Crystal Structure and Dielectric Properties of Pb6Sb2O11 Single Crystals. Journal of Structural Chemistry 64:11, pages 2226-2234.
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Yongke Yan, Liwei D. Geng, Li-Qian Cheng, Xiaotian Li, Haoyang Leng, Ke Wang, Bed Poudel, Amin Nozariasbmarz, Mohan Sanghadasa, Susan Trolier-McKinstry, Qi-Ming Zhang, Yu U. Wang & Shashank Priya. (2023) Correlation between cation order/disorder and the electrocaloric effect in the MLCCs of complex perovskite ferroelectrics. Acta Materialia, pages 118990.
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Sanju Gupta. (2022) Phase transformation and growth mechanism of RF sputtered ferroelectric lead scandium tantalate (PbSc 0.5 Ta 0.5 O 3 ) films . Journal of the American Ceramic Society 106:4, pages 2209-2224.
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Youri Nouchokgwe, Pierre Lheritier, Tomoyasu Usui, Alvar Torello, Asmaa El Moul, Veronika Kovacova, Torsten Granzow, Sakyo Hirose & Emmanuel Defay. (2022) Materials efficiency of electrocaloric lead scandium tantalate multilayer capacitors. Scripta Materialia 219, pages 114873.
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Youri Nouchokgwe, Pierre Lheritier, Chang-Hyo Hong, Alvar Torelló, Romain Faye, Wook Jo, Christian R. H. Bahl & Emmanuel Defay. (2021) Giant electrocaloric materials energy efficiency in highly ordered lead scandium tantalate. Nature Communications 12:1.
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B. Nair, T. Usui, S. Crossley, S. Kurdi, G. G. Guzmán-Verri, X. Moya, S. Hirose & N. D. Mathur. (2019) Large electrocaloric effects in oxide multilayer capacitors over a wide temperature range. Nature 575:7783, pages 468-472.
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S. Crossley, B. Nair, R. W. Whatmore, X. Moya & N. D. Mathur. (2019) Electrocaloric Cooling Cycles in Lead Scandium Tantalate with True Regeneration via Field Variation. Physical Review X 9:4.
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Abhisikta Barman, Sohini Kar‐Narayan & Devajyoti Mukherjee. (2019) Caloric Effects in Perovskite Oxides. Advanced Materials Interfaces 6:15, pages 1900291.
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Hitoshi Honmi, Yoichiro Hashizume, Takashi Nakajima & Soichiro Okamura. (2017) Thermodynamic analysis of a cooling system using electrocaloric effect. Japanese Journal of Applied Physics 56:10S, pages 10PC09.
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Yucheng Sun, Xuedong Li, Yuanyuan Zhou, Haimin Li, Jiliang Zhu, Hong Liu, Ying Pei, Dingquan Xiao & Jianguo Zhu. (2009) Effect of two-steps RTA on the properties of PSTT5 thin films. Effect of two-steps RTA on the properties of PSTT5 thin films.
A. Sternberg, L. Shebanovs, E. Birks, M. Tyunina & V. Zauls. 2000. Defects and Surface-Induced Effects in Advanced Perovskites. Defects and Surface-Induced Effects in Advanced Perovskites 341 353 .
D.Q Xiao, Y.C Wang, R.L Zhang, S.Q Peng, J.G Zhu & B Yang. (1998) Electrocaloric properties of (1−x)Pb(Mg1/3Nb2/3)O3–xPbTiO3 ferroelectric ceramics near room temperature. Materials Chemistry and Physics 57:2, pages 182-185.
Crossref
A. Sternberg, L. Shebanovs, E. Birks & M. Ozolinsh. (1996) Properties of lead containing perovskites oriented for application in electronics and electrooptics. Properties of lead containing perovskites oriented for application in electronics and electrooptics.

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