A Study on Improving the Properties of Wide Bandgap Perovskite Through Triple Halide Composition

C. Moon, N. Jeon
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Abstract

The bandgap of halide perovskite materials can be easily adjusted through compositional variation. Perovskite solar cells (PSCs) have attracted attention as promising materials for tandem solar cells because of their tunable bandgaps. Nevertheless, the photoinduced halide segregation phenomenon, which is related to photostability and device performance, remains a problem. Herein, we confirmed that the perovskite composition was controlled by the triple halide composition through the addition of lead chloride (PbCl 2 ). The triple halide composition not only controlled the perovskite bandgap but also suppressed the photoinduced halide segregation in the perovskite film. In addition, the device performance was improved by the enhanced crystallinity of the perovskite thin film with the triple halide composition. (wide bandgap perovskite), (triple halide composition), 상 분리 (halide phase segregation), 탠덤태양전지 (tandem solar cells)
三卤化物复合改善宽禁带钙钛矿性能的研究
卤化物钙钛矿材料的带隙可以通过组分的变化来调节。钙钛矿太阳能电池(PSCs)由于其可调谐的带隙而成为极具发展前景的串联太阳能电池材料。然而,光致卤化物偏析现象仍然是一个问题,它关系到光稳定性和器件性能。在这里,我们通过添加氯化铅(PbCl 2)证实了钙钛矿的组成是由三卤化物组成控制的。三卤化物组成不仅控制了钙钛矿带隙,而且抑制了光致卤化物在钙钛矿膜中的偏析。此外,三卤化物组成的钙钛矿薄膜结晶度提高,器件性能得到改善。(宽禁带钙钛矿),(三卤化物组成),(卤化物相偏析),(串联太阳能电池)
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