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稀土掺杂BiFeO₃陶瓷中成分驱动的结构相变:综述

Composition-driven structural phase transitions in rare-earth-doped BiFeO3 ceramics: a review.

作者信息

Arnold Donna C

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2015 Jan;62(1):62-82. doi: 10.1109/TUFFC.2014.006668.

Abstract

Bismuth ferrite suffers from high leakage currents and the presence of a complex incommensurate spin cycloidal magnetic ordering, which has limited its commercial viability and has led researchers to investigate the functionality of doped BiFeO3 ceramics. In particular, the substitution of rare earths onto the Bi(3+) site of the perovskite lattice have been shown to lead to improved functional properties, including lower leakage currents and the suppression of the magnetic spin cycloid. There is particular interest in materials with compositions close to structural morphotropic phase boundaries, because these may lead to materials with enhanced electronic and magnetic properties analogous to the highly relevant PbZrO3- PbTiO3 solid solution. However, many contradictory crystal structures and physical behaviors are reported within the literature. To understand the structure-property relationships in these materials, it is vital that we first unravel the complex structural phase diagrams. We report here a comprehensive review of structural phase transitions in rare-earth-doped bismuth ferrite ceramics across the entire lanthanide series. We attempt to rationalize the literature in terms of the perovskite tool kit and propose an updated phase diagram based on an interpretation of the literature.

摘要

铋铁氧体存在高漏电流以及复杂的非公度自旋摆线磁有序,这限制了其商业可行性,促使研究人员研究掺杂的BiFeO₃陶瓷的功能。特别是,在钙钛矿晶格的Bi(3+)位点上取代稀土已被证明可改善功能特性,包括降低漏电流和抑制磁自旋摆线。人们对成分接近结构同型相界的材料特别感兴趣,因为这些材料可能会产生具有增强的电子和磁性的材料,类似于高度相关的PbZrO₃ - PbTiO₃固溶体。然而,文献中报道了许多相互矛盾的晶体结构和物理行为。为了理解这些材料中的结构 - 性能关系,首先解开复杂的结构相图至关重要。我们在此报告对整个镧系元素系列中稀土掺杂铋铁氧体陶瓷的结构相变的全面综述。我们试图根据钙钛矿工具包对文献进行合理化,并基于对文献的解释提出更新的相图。

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