钙钛矿(结构)
材料科学
光电子学
纳米技术
光伏
工程物理
光伏系统
太阳能电池
太阳能
制作
能量转换效率
作者
Chaofan Jiang,Hui Li,Li M,Likai Zheng,Jin Huang,Yingchen Peng,Jie Zhou,Ye Yang,Songling Huang,Chenyi Yi
标识
DOI:10.1021/acsenergylett.6c01361
摘要
Flexible semitransparent perovskite solar cells (FS-PSCs) are promising for lightweight PV and flexible tandem top cells, yet high efficiency and mechanical stability are hard to achieve simultaneously. Herein, we develop a buried-interface engineering strategy via neopentylammonium iodide (NPAI) modification on SnO 2 /perovskite together with a low-loss flexible IZO/Cu-grid electrode. NPAI reconstructs the buried interface, improves crystallinity, and suppresses nonradiative recombination. The optimized FS-PSCs achieve a champion efficiency of 21.4% and average 61.3% NIR transmittance (800−1200 nm), featuring outstanding operational stability over 500 h of maximum power point (MPP) tracking and 94.5% efficiency retention after 2000 bending cycles (10 mm radius). By integrating this semitransparent absorber, all-flexible perovskite/silicon four-terminal tandems reach a record 27.7% power conversion efficiency (PCE), setting a benchmark for flexible tandem photovoltaics.
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