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Substituent engineering in tertiary phosphine oxides for passivating defects of perovskite solar cells
EcoMat ( IF 10.7 ) Pub Date : 2024-06-17 , DOI: 10.1002/eom2.12470
Sun‐Ho Lee 1 , Seong Chan Cho 1 , Sang Uck Lee 1 , Nam‐Gyu Park 1, 2
Affiliation  

Defect passivation based on Lewis acid–base chemistry has been regarded as an effective strategy to improve the photovoltaic performance and stability of perovskite solar cells (PSCs). Here, we report on tertiary phosphine oxides (R3PO) as materials for defect passivation, where photovoltaic performance was investigated depending on the substituents R. Electron-donating ability of the substituents in R3PO was found to play an important role in passivation. Cyclohexyl substituent was better in achieving photovoltaic performance than linear hexyl substituent. The heterocyclic morpholine substituent bearing oxygen and nitrogen in cyclohexyl form further improved photovoltaic performance due to its enhanced electron-donating ability. Compared with an untreated PSC, the trimorpholinophosphine oxide (TMPPO)-treated PSC improved the power conversion efficiency from 21.95% to 23.72%. Additionally, the dark-storage stability test with an unencapsulated device showed that the TMPPO-treated device maintained 92.7% of its initial PCE after 1250 h, while 86.8% was maintained for the untreated device. Three hundred hour-light-soaking of the encapsulated devices revealed that the operational stability of the TMPPO-treated PSC was superior to the untreated device.

中文翻译:


用于钙钛矿太阳能电池钝化缺陷的叔膦氧化物的取代工程



基于路易斯酸碱化学的缺陷钝化被认为是提高钙钛矿太阳能电池(PSC)光伏性能和稳定性的有效策略。在这里,我们报道了叔膦氧化物(R 3 PO)作为缺陷钝化材料,其中根据取代基 R 研究了光伏性能。R 3
更新日期:2024-06-17
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