首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Optoelectronic properties and color chemistry of native point defects in Al:ZnO transparent conductive oxide
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Optoelectronic properties and color chemistry of native point defects in Al:ZnO transparent conductive oxide

机译:Al:ZnO透明导电氧化物中本征点缺陷的光电性质和颜色化学

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We present a first principles study on the effect of native point defects in Al:ZnO transparent conductive oxide. Our results indicate that oxygen and zinc vacancies play two completely different roles:the former maintain the electrical properties while worsening the transparency of native Al:ZnO. The latter are strong electron acceptors that can destroy the metal-like conductivity of the system. While the percentage of doping amount is not really relevant, the compensation ratio between Zn vacancies and Al dopants is crucial for the final electrical properties of the system. H impurities always act as electron donors and generally improve the characteristics of the transparent conductor. Finally, we show how the chemistry of the defects affects the color of Al:ZnO samples, in agreement with experimental results. Our results pave the way to defect engineering for the growth of high performance transparent conductive oxides.
机译:我们提出了关于Al:ZnO透明导电氧化物中自然点缺陷影响的第一个原理研究。我们的结果表明,氧和锌的空位起着两个完全不同的作用:前者在保持电性能的同时,会恶化天然Al:ZnO的透明度。后者是强电子受体,可以破坏系统的类金属导电性。虽然掺杂量的百分比并不真正相关,但锌空位和Al掺杂剂之间的补偿比对于系统的最终电性能至关重要。 H杂质始终充当电子给体,通常会改善透明导体的特性。最后,与实验结果一致,我们展示了缺陷的化学性质如何影响Al:ZnO样品的颜色。我们的结果为高性能透明导电氧化物生长的缺陷工程铺平了道路。

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