New Janus structure photocatalyst having widely tunable electronic and optical properties with strain engineering

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY(2023)

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摘要
Photoelectrochemical water splitting using solar energy, generating oxygen and hydrogen is one of the clean fuel production processes. Inspired by surface-dependent characteristics of Janus structures, a newly designed Janus monolayer Silicon Phosphorous Arsenide (SiPAs) was analyzed with Density Functional Theory (DFT) methods. Hybrid exchange-correlation functional (HSE06) combined with Wannier90-based analysis for electronic and optical properties of SiPAs reveals that it can act as a photocatalyst. SiPAs show an indirect bandgap of 1.88 eV, absorbing visible light range is 350 to 500 nm. The phonon spec-trum confirms dynamic stability. The exciton binding energy is computed with GW/BSE methods. The electronic band edge positions are at-5.75 and-4.43 eV, perfectly straddling the water redox poten-tials. Interestingly the strain application modifies the bandgap and also non-homogenously widens the absorption band. A novel range of photocatalyst designs with Group IV-V elements with great promise for water-splitting, photovoltaic, and narrow bandgap semiconductor (optoelectronics) applications may be feasible. (c) 2023 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.
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关键词
Solar water-splitting, Janus structure, Density functional theory, Strain engineering, Optical and electronic property tuning, Optoelectronic
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