Computational Materials Science2022,Vol.2098.DOI:10.1016/j.commatsci.2022.111351

Exploring the stable structures and photovoltaic properties of an ideal pseudo-binary alloy: Indium gallium phosphide

Xue, Pengyan Wang, Yanting Tikhonov, Evgenii
Computational Materials Science2022,Vol.2098.DOI:10.1016/j.commatsci.2022.111351

Exploring the stable structures and photovoltaic properties of an ideal pseudo-binary alloy: Indium gallium phosphide

Xue, Pengyan 1Wang, Yanting 1Tikhonov, Evgenii1
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作者信息

  • 1. Northwestern Polytech Univ
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Abstract

Pseudo-binary III-V semiconductor alloys are promising for applications in optical, photovoltaic and photo electrochemical fields, for their tunable band gaps and band alignments. In this work, we carefully investigate structural and photovoltaic properties of indium gallium phosphide (InxGa1-xP; 0 < x < 1) alloys. Using evolutionary algorithm crystal structure prediction, we perform structure searches for indentifying potential crystal structures of InxGa1-xP alloys in nine chemical compositions at zero temperature and ambient pressure. We find that InxGa1-xP alloys can adopt zinc blende (ZB) and wurtzite (WT) structures and the former generally have lower energy than the latter at all compositions. Based on these predicted InxGa1-xP structures, we evaluated their spectroscopic limited maximum efficiencies (SLMEs) and find that InxGa1-xP alloys with high In concentrations (x & GE; 0.5) have higher SLME values than those of InxGa1-xP alloys with low In concentrations (x < 0.5). We also find that SLMEs of disordered InxGa1-xP alloys are larger than those of ordered alloys due to the enhanced oscillator strengths.

Key words

Indium gallium phosphide/Crystal structure prediction/Density Functional theory/Photovoltaics/CRYSTAL-STRUCTURE PREDICTION/TANDEM SOLAR-CELLS/N-TYPE INP/OPTICAL-PROPERTIES/BAND-STRUCTURE/GAINP/MOBILITY/GROWTH/PHOTOLUMINESCENCE/COMPENSATION

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出版年

2022
Computational Materials Science

Computational Materials Science

EISCI
ISSN:0927-0256
被引量1
参考文献量75
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