材料科学
阳光
光伏系统
光电子学
有机太阳能电池
透明度(行为)
可见光谱
光学
能量转换效率
传输(电信)
电气工程
电信
物理
计算机科学
计算机安全
工程类
作者
Quan Liu,Luís G. Gerling,Francisco Bernal‐Texca,Johann Toudert,Tengfei Li,Xiaowei Zhan,Jordi Martorell
标识
DOI:10.1002/aenm.201904196
摘要
Abstract For many years, it has been recognized that potential organic photovoltaic cells must be integrated into elements requiring high transparency. In most of such elements, sunlight is likely to be incident at large angles. Here it is demonstrated that light transmission can be largely decoupled from harvesting by optically tailoring an infrared shifted nonfullerene acceptor based organic cell architecture. A 9.67% power conversion efficiency at 50° incidence is achieved together with an average visual transmission above 50% at normal incidence. The deconstruction of a 1D nanophotonic structure is implemented to conclude that just two λ/4 thick layers are essential to reach, for a wide incidence angle range, a higher than 50% efficiency increase relative to the standard configuration reference. In an outdoor measurement of vertically positioned 50% visible transparent cells, it is demonstrated that 9.80% of sunlight energy can be converted into electricity during the course of 1 day.
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