钙钛矿(结构)
结晶度
钝化
卤化物
材料科学
图层(电子)
能量转换效率
化学工程
碘化物
光伏系统
光电子学
化学
无机化学
纳米技术
复合材料
工程类
生态学
生物
作者
Ching‐Ho Tien,Yuchen Liu,Thangaraji Vasudevan,Lung‐Chien Chen
出处
期刊:Heliyon
[Elsevier BV]
日期:2024-01-28
卷期号:10 (3): e25352-e25352
被引量:4
标识
DOI:10.1016/j.heliyon.2024.e25352
摘要
Addressing the critical challenge of mitigating defect generation and enhancing the extended durability of perovskite solar cells (PeSCs) requires effective passivation materials. In our study, we investigated the impact of varying concentrations of cesium iodide (CsI), an alkali halide, on the interface layer among the hole transporting layer (HTL) and the perovskite film in a triple-cation lead hybrid halide Cs0.15FA0.81MA0.04Pb(I2.86Br0.14)3 perovskite layer. Our findings revealed that the introduction of CsI into the NiOx HTL led to improved crystallinity and a reduction in defects within the perovskite film. Consequently, the photovoltaic performance of the CsI-modified PeSC exhibited a notable enhancement. Specifically, the photoelectric conversion efficiency (PCE) increased from 18.7 % in the original PeSC, which lacked CsI modification, to 20.5 %. Moreover, this improvement in PCE was accompanied by excellent stability, with the CsI-modified PeSC retaining 80 % of its opening PCE even afterward 144 h of testing.
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