Large-Scale Computational Identification of p-Type Oxide Semiconductors by Hierarchical Screening

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초록

With potentials to outperform traditional semiconductors, oxide semiconductors are penetrating into a wide range of energy, environmental, and electronic applications. However, an insufficient library of p-type oxides is a majo- obstacle against complete oxide electronics. To identify promising p , type oxides, we carry out a large-scale computational screening over 17,700 oxygen- containing compounds using the hydrogen descriptor that was shown to select the p-type oxide reliably. To enable high-throughput screening, we use in the initial stage coarse but simple descriptors that correlate with the hydrogen descriptor. Through a hierarchical screening procedure, we find 156 p-type oxides with the band gap larger than 1.1 eV, discovering promising candidates such as NaNbO2 and La2SiO4Se and also new types of p-type oxides. Furthermore, we classify the identified p-type oxides according to the valence-band character and reveal chemical principles underlying the p-type dopability.

키워드

TOTAL-ENERGY CALCULATIONSTHIN-FILM TRANSISTORSELECTRICAL-CONDUCTIONMETAL-OXIDESTRANSPARENTFABRICATIONMOBILITY
제목
Large-Scale Computational Identification of p-Type Oxide Semiconductors by Hierarchical Screening
저자
Youn, YongLee, MisoKim, DoyeonJeong, Jae KyeongKang, YounghoHan, Seungwu
DOI
10.1021/acs.chemmater.9b00816
발행일
2019-08
유형
Article
저널명
Chemistry of Materials
31
15
페이지
5475 ~ 5483