成核
平面的
材料科学
锑
方向(向量空间)
结晶
光电子学
结晶学
化学工程
几何学
化学
计算机科学
冶金
计算机图形学(图像)
工程类
有机化学
数学
作者
Donglou Ren,Chen Li,Jun Xiong,Weizheng Liang,M. Cathelinaud,Xianghua Zhang,Shuo Chen,Zhiqiang Li,Daocheng Pan,Guangxing Liang,Bingsuo Zou
出处
期刊:Angewandte Chemie
[Wiley]
日期:2024-09-12
卷期号:64 (1): e202413108-e202413108
被引量:17
标识
DOI:10.1002/anie.202413108
摘要
Abstract Antimony selenosulfide (Sb 2 (S,Se) 3 ) has obtained widespread concern for photovoltaic applications as a light absorber due to superior photoelectric features. Accordingly, various deposition technologies have been developed in recent years, especially hydrothermal deposition method, which has achieved a great success. However, device performances are limited with severe carrier recombination, relating to the quality of absorber and interfaces. Herein, bulk and interface defects are simultaneously suppressed by regulating heterogeneous nucleation kinetics with barium dibromide (BaBr 2 ) introduction. In details, the Br adsorbs and dopes on the polar planes of cadmium sulfide (CdS) buffer layer, promoting the exposure of nonpolar planes of CdS, which facilitates the favorable growth of [hk1]‐Sb 2 (S,Se) 3 films possessing superior crystallinity and small interface defects. Additionally, the Se/S ratio is increased due to the replacement of Se by Br, causing a downshift of the Fermi levels with a benign band alignment and a shallow‐level defect. Moreover, Ba 2+ is located at grain boundaries by coordination with S and Se ions, passivating grain boundary defects. Consequently, the efficiency is increased from 7.70 % to 10.12 %. This work opens an avenue towards regulating the heterogeneous nucleation kinetics of Sb 2 (S,Se) 3 film deposited via hydrothermal deposition approach to optimize its crystalline orientation and defect features.
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