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钙钛矿氧化物中氧空位的结构和动态特性-通过现代多频和脉冲 EPR 技术分析缺陷化学。

Structural and dynamic properties of oxygen vacancies in perovskite oxides--analysis of defect chemistry by modern multi-frequency and pulsed EPR techniques.

机构信息

Institut für Physikalische Chemie I, Universität Freiburg, Albertstr. 21, D-79104 Freiburg, Germany.

出版信息

Phys Chem Chem Phys. 2011 Jan 14;13(2):368-84. doi: 10.1039/b918782k. Epub 2010 Nov 17.

DOI:10.1039/b918782k
PMID:21082136
Abstract

Multi-frequency and pulsed electron paramagnetic resonance (EPR) provides a sensitive spectroscopic tool to elucidate the defect structure of transition-metal doped perovskite oxides, as well as to monitor dynamic processes of oxygen vacancies in these materials. In this regard, high-frequency EPR spectrometers and pulsed EPR techniques such as the hyperfine sublevel correlation experiment (HYSCORE) may now routinely be used for dedicated investigations, providing considerably more insight than the application of standard continuous-wave EPR. Recent results include the formation of defect complexes between acceptor-type transition-metal centers with either one or two oxygen vacancies for the reason of charge compensation. Furthermore, such defect complexes follow the domain switching upon poling ferroelectric compounds with correspondingly high electric fields. On the other hand, multi-valent manganese functional centers provide trapping centers for electronic and ionic charge carriers (e', ) such that valency altered acceptor states or defect complexes are formed. Additionally, the trapping of charge carriers at the intrinsic 'reduced' B-site ions, and , can be observed by means of EPR spectroscopy.

摘要

多频和脉冲电子顺磁共振(EPR)为研究过渡金属掺杂钙钛矿氧化物的缺陷结构以及监测这些材料中氧空位的动态过程提供了一种灵敏的光谱工具。在这方面,高频 EPR 光谱仪和脉冲 EPR 技术(如超精细亚层相关实验(HYSCORE))现在通常可用于专门的研究,提供的信息量比应用标准连续波 EPR 要多得多。最近的研究结果包括:由于电荷补偿的原因,受主型过渡金属中心与一个或两个氧空位之间形成了缺陷复合物。此外,这种缺陷复合物会随着铁电化合物的极化而发生畴转变,相应的电场强度很高。另一方面,多价锰功能中心为电子和离子电荷载流子(e', )提供了捕获中心,从而形成了价态改变的受主态或缺陷复合物。此外,通过 EPR 光谱可以观察到在固有“还原”B 位离子,和 ,处的电荷载流子的捕获。

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