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基于第一性原理对碱基金属单卤化物钙钛矿化合物XMgI(X = Li/Na)的结构稳定性、力学稳定性和光电性质的研究:密度泛函理论洞察

First principles study on the structural stability, mechanical stability and optoelectronic properties of alkali-based single halide perovskite compounds XMgI (X = Li/Na): DFT insight.

作者信息

Guji Kefyalew Wagari, Geleta Tesfaye Abebe, Bouri Nabil, Ramirez Rivera Victor José

机构信息

Physics Department, Bule Hora University P. O. BOX 144, Bule Hora Ethiopia

Department of Agricultural Chemistry, National Taiwan University Taipei 10617 Taiwan

出版信息

Nanoscale Adv. 2024 Jul 24;6(17):4479-4491. doi: 10.1039/d4na00305e. eCollection 2024 Aug 20.

Abstract

Metal-halide perovskites are recognized as cutting-edge solar energy technology, boasting remarkable absorption capabilities, minimal environmental impact, and cost-effectiveness. This study delves into the structural stability, mechanical stability, and optoelectronic properties of lead-free halide perovskites, specifically XMgI (X = Li/Na), by utilizing the CASTEP and WIEN2k software along with the GGA-PBE and Tran-Blaha modified Becke-Johnson (TB-mBJ) exchange-correlation functions to compare their electronic properties. The structural and mechanical stabilities were confirmed by assessing their tolerance factor and formation energy and by evaluating their elastic constants, respectively. Using the TB-mBJ exchange-correlation potential function, the calculated indirect band gap values for LiMgI and NaMgI were 2.474 and 2.556 eV, respectively. These band gaps are suitable for solar energy harvesting due to their broad optical absorption ranging from infrared to visible light. The partial density of states and the total density of states were determined to investigate the contribution of individual atoms. Consequently, this study can guide researchers focusing on the experimental synthesis of these materials at the laboratory scale for in-depth exploration, particularly in applications such as photovoltaics and various optoelectronic devices.

摘要

金属卤化物钙钛矿被公认为是前沿的太阳能技术,具有卓越的吸收能力、最小的环境影响和成本效益。本研究通过使用CASTEP和WIEN2k软件以及GGA-PBE和Tran-Blaha修正的贝克-约翰逊(TB-mBJ)交换关联函数,深入研究无铅卤化物钙钛矿XMgI(X = Li/Na)的结构稳定性、机械稳定性和光电性能,以比较它们的电子性质。分别通过评估其容忍因子和形成能以及通过评估其弹性常数来确认结构和机械稳定性。使用TB-mBJ交换关联势函数,计算得出LiMgI和NaMgI的间接带隙值分别为2.474和2.556 eV。由于它们从红外到可见光的广泛光吸收,这些带隙适用于太阳能收集。确定了态的部分密度和态的总密度以研究单个原子的贡献。因此,本研究可以指导专注于在实验室规模对这些材料进行实验合成以进行深入探索的研究人员,特别是在光伏和各种光电器件等应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e11/11334981/4468bb4a9ed9/d4na00305e-f1.jpg

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