在压力作用下,卤化物过氧化物 KSrCl3 的带隙从紫外区转移到可见光区,用于光伏应用

IF 2.7 Q2 PHYSICS, CONDENSED MATTER Micro and Nanostructures Pub Date : 2024-06-14 DOI:10.1016/j.micrna.2024.207911
Z. Jellil , A. Idrissi el oudrhiri , H. Jebari , A. Soussi , Mohamed Eddekkar , Ilyass Ez-zejjari , H. Ez-Zahraouy
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引用次数: 0

摘要

本研究深入探讨了静水压力对立方卤化物包晶 KSrCl3 的结构、电子和光学特性的影响。压力造成的原子间距离的减小对这种包晶的单胞体积和晶格常数有相当大的影响。随着压力的增加,电子带隙会缩小,从紫外光谱转移到可见光谱。这一现象简化了电子从价带到导带的转变过程,从而提高了光电设备的效率。此外,当带隙在大约 50 GPa 的压力下从间接带隙变为直接带隙时,这种材料更适合用于各种光电应用。全面的光学分析表明,KSrCl3 在外科手术工具、集成电路、QLED、OLED、太阳能电池、波导和用于减少太阳热量的材料中都有潜在的应用。公差系数 "t "证实了 KSrCl3 相在整个应用压力范围内的稳定性,而负值的形成能值则表明其达到了热力学稳定性。
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Band gap shifting of halide perovskite KSrCl3 from ultra-violet to visible region under pressure for photovoltaic applications

This research delves into the influence of hydrostatic pressure on the structural, electronic, and optical characteristics of the cubic halide perovskite KSrCl3. The reduction in interatomic distance caused by pressure has a considerable effect on the unit cell volume and lattice constant of this perovskite. As pressure increases, the electronic band gap closes, transferring from the ultraviolet to the visible spectrum. This phenomenon increases the efficiency of optoelectronic devices by simplifying the transition of electrons from the valence band to the conduction band. In addition, the material becomes more appropriate for use in a variety of optoelectronic applications when the band gap changes from indirect to direct at pressures of about 50 GPa. A comprehensive optical analysis suggests that KSrCl3 holds potential applications in surgical tools, integrated circuits, QLED, OLED, solar cells, waveguides, and materials designed for solar heat reduction. The tolerance factor “t" confirms the stability of the KSrCl3 phase across the applied pressure range, and the formation energy values with negative values show the attained thermodynamic stability.

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