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用于光催化水分解应用的基于XGaO(X = Ba和Cs)立方钙钛矿材料的分析:一项密度泛函理论研究。

Analysis of XGaO (X = Ba and Cs) cubic based perovskite materials for photocatalytic water splitting applications: a DFT study.

作者信息

Asiri Abdullah M, Shahzad Muhammad Khuram, Hussain Shoukat, Zhu Kai, Khan Sher Bahadar, Alamry Khalid Ahmad, Alfifi Soliman Y, Marwani Hadi M

机构信息

Chemistry Department, Faculty of Science, King Abdulaziz University, P. O. Box 80203, Jeddah, 21589, Saudi Arabia.

Institute of Physics, Khwaja Fareed University of Engineering and Information Technology, Rahim Yar Khan, 64200, Pakistan.

出版信息

Heliyon. 2023 Feb 26;9(3):e14112. doi: 10.1016/j.heliyon.2023.e14112. eCollection 2023 Mar.

Abstract

Energy conversion has become an important technology for meeting energy production and consumption in the modern era. Water splitting and solar cell technologies are projected to close the gap between demand and consumption. Therefore, XGaO (X = Ba and Cs) compounds having characteristics i.e., electrical, optical, mechanical, and structural are depicted by using a density functional theory (DFT) based CASTEP software with ultrasoft pseudo-potential plane-wave and Generalized Gradient Approximation and Perdew Burke Ernzerhof exchange correlation functional (GGA-PBE). According to the findings, all of these compounds have a cubic "pm3m" structure with space group 221. The CsGaO and BaGaO have direct and indirect band gaps, with respect to electronic band-structure recreations. Density of states like total density of states (TDOS) and partial density of states (PDOS) commend the extent of localization of electrons in numerous bands. The optical properties of these compounds are explored by adjusting dispersion curve/relation for theoretical dielectric function (DF) scale to the corresponding peaks. As a result, these materials could be used to consume light in the visible zone via photo catalysis. CsGaO in combination with BaGaO can produce effective results, so these compounds have a remarkable potential application for sensing and water splitting.

摘要

在现代,能量转换已成为满足能源生产和消费的一项重要技术。水分解和太阳能电池技术有望缩小供需差距。因此,利用基于密度泛函理论(DFT)的CASTEP软件、超软赝势平面波以及广义梯度近似和佩德韦-伯克-恩泽霍夫交换关联泛函(GGA-PBE),对具有电学、光学、力学和结构特性的XGaO(X = Ba和Cs)化合物进行了描述。研究结果表明,所有这些化合物都具有空间群为221的立方“pm3m”结构。就电子能带结构重建而言,CsGaO和BaGaO分别具有直接和间接带隙。诸如总态密度(TDOS)和分态密度(PDOS)等态密度表明了电子在多个能带中的局域化程度。通过将理论介电函数(DF)标度的色散曲线/关系调整到相应峰值,对这些化合物的光学性质进行了探究。结果表明,这些材料可通过光催化作用在可见光区吸收光。CsGaO与BaGaO结合可产生有效结果,因此这些化合物在传感和水分解方面具有显著的潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eec/10011483/0227004d94be/gr1.jpg

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