钝化
镓
材料科学
铟
光电子学
铜
二硒醚
晶界
太阳能电池
开路电压
载流子寿命
纳米技术
复合材料
图层(电子)
硅
冶金
电压
微观结构
硒
电气工程
工程类
作者
Jingwei Chen,Xuan Chang,Jianxin Guo,Qing Gao,Xuning Zhang,Chenxu Liu,Xueliang Yang,Xin Zhou,Bingbing Chen,Feng Li,Jianming Wang,Xiaobing Yan,Dengyuan Song,Li Han,Benjamin S. Flavel,Shufang Wang,Jianhui Chen
出处
期刊:Research
[AAAS00]
日期:2023-01-01
卷期号:6
被引量:3
标识
DOI:10.34133/research.0084
摘要
Diverse defects in copper indium gallium diselenide solar cells cause nonradiative recombination losses and impair device performance. Here, an organic passivation scheme for surface and grain boundary defects is reported, which employs an organic passivation agent to infiltrate the copper indium gallium diselenide thin films. A transparent conductive passivating (TCP) film is then developed by incorporating metal nanowires into the organic polymer and used in solar cells. The TCP films have a transmittance of more than 90% in the visible and nearinfrared spectra and a sheet resistance of ~10.5 Ω/sq. This leads to improvements in the open-circuit voltage and the efficiency of the organic passivated solar cells compared with control cells and paves the way for novel approaches to copper indium gallium diselenide defect passivation and possibly other compound solar cells.
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