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多组分透明导电氧化物:材料建模的进展。

Multi-component transparent conducting oxides: progress in materials modelling.

机构信息

Kathleen Lonsdale Materials Chemistry, Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, UK.

出版信息

J Phys Condens Matter. 2011 Aug 24;23(33):334210. doi: 10.1088/0953-8984/23/33/334210. Epub 2011 Aug 3.

Abstract

Transparent conducting oxides (TCOs) play an essential role in modern optoelectronic devices through their combination of electrical conductivity and optical transparency. We review recent progress in our understanding of multi-component TCOs formed from solid solutions of ZnO, In(2)O(3), Ga(2)O(3) and Al(2)O(3), with a particular emphasis on the contributions of materials modelling, primarily based on density functional theory. In particular, we highlight three major results from our work: (i) the fundamental principles governing the crystal structures of multi-component oxide structures including (In(2)O(3))(ZnO)(n) and (In(2)O(3))(m)(Ga(2)O(3))(l)(ZnO)(n); (ii) the relationship between elemental composition and optical and electrical behaviour, including valence band alignments; (iii) the high performance of amorphous oxide semiconductors. On the basis of these advances, the challenge of the rational design of novel electroceramic materials is discussed.

摘要

透明导电氧化物(TCOs)通过其导电性和光学透明度的结合,在现代光电子器件中发挥着重要作用。我们回顾了近年来对由 ZnO、In(2)O(3)、Ga(2)O(3)和 Al(2)O(3)固溶体形成的多组分 TCO 的理解的最新进展,特别强调了材料建模的贡献,主要基于密度泛函理论。特别是,我们强调了我们工作中的三个主要结果:(i)多组分氧化物结构(包括(In(2)O(3))(ZnO)(n)和(In(2)O(3))(m)(Ga(2)O(3))(l)(ZnO)(n))晶体结构的基本原理;(ii)元素组成与光学和电学性能之间的关系,包括价带排列;(iii)非晶氧化物半导体的高性能。在此基础上,讨论了新型电子陶瓷材料的合理设计所面临的挑战。

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