材料科学
钙钛矿(结构)
甲脒
介孔材料
磁滞
能量转换效率
钙钛矿太阳能电池
光伏
纳米晶
光电子学
化学工程
光伏系统
结晶学
纳米技术
化学
催化作用
凝聚态物理
工程类
物理
生物
生物化学
生态学
作者
Yousheng Wang,Hui Ju,Tahmineh Mahmoudi,Chong Liu,Cuiling Zhang,Sujuan Wu,Yuzhao Yang,Zhen Wang,Jinlong Hu,Ye Cao,Fei Guo,Yoon‐Bong Hahn,Yaohua Mai
出处
期刊:Nano Energy
[Elsevier]
日期:2021-10-01
卷期号:88: 106285-106285
被引量:69
标识
DOI:10.1016/j.nanoen.2021.106285
摘要
Stabilization of perovskite phases and interfaces in stacked perovskite photovoltaics are critical for their efficiency, operational stability and perovskite solar modules (PSMs). Herein, A-site cation-size mismatch processed perovskite-composition films with less crystal defects are formed by incorporating larger cations formamidinium and methylammonium with smaller cations, i.e., potassium and cesium. The interface stabilization can be achieved by inserting Poly[bis(4-phenyl) (2,4,6-trimethylphenyl) amine], mesoporous alumina, phenethyammonium ligands and atomic-layer-deposition tin oxides at desired interfaces in inverted perovskite solar cells (PSCs). Thus, the interface defects, non-radiative recombination and ion migration can be remarkably suppressed, resulting in improvement of interface contacts and hole/electron transport. As a result, both cation-size mismatch and interface stabilization (CM-IS) strategies enable hysteresis-free, reproducible 21.9% and 16.9% efficient NiOx-based inverted PSCs and PSMs. Moreover, a high Voc of 1.16 V and 8.05 V can be obtained in large-area PSCs (1 cm2) and PSMs (11.2 cm2) with 7 subcells connected in series. Additionally, the measured T85 lifetime (the time as a function of PCEs decrease to 85% of its initial value) of unencapsulated PSCs under continuous AM 1.5G light illumination is approximately 1000 h.
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