Cu2ZnSnSe4中Na和K杂质取代位和间隙位的杂化泛函计算

E. Ghorbani, J. Kiss, H. Mirhosseini, T. Kuhne, C. Felser
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引用次数: 4

摘要

利用HSE06杂化泛函从头计算研究了Cu2ZnSnSe4中Na和K外源缺陷的能量学、原子和电子结构。结果表明:(1)在所有取代位点中,cu位点是Na和k最有利的位置;(2)四面体配位的形成能低于八面体配位的形成能。(iii)根据能带结构计算可知,硒相关缺陷导致了带隙内缺陷态的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid functional calculations on the Na and K impurities in substitutional and interstitial positions in Cu2ZnSnSe4
We studied the energetics, atomic and electronic structure of Na and K extrinsic defects in Cu2ZnSnSe4 by ab initio calculations using the HSE06 hybrid functional. Our results show that (i) among all substitutional positions, the Cu-site is the most favorable position for both Na and K. (ii) The tetrahedrally coordinated interstitial site has a lower formation energy than the octahedrally coordinated interstitial site. (iii) Based on the band structure calculations we can conclude, Se-related defects lead to the formation of defect states within the band gap.
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