材料科学
光伏
有机太阳能电池
聚对苯二甲酸乙二醇酯
光伏系统
纳米技术
基质(水族馆)
电极
复合材料
聚合物
电气工程
海洋学
化学
物理化学
地质学
工程类
作者
Yanna Sun,Lingxian Meng,Xiangjian Wan,Ziqi Guo,Xin Ke,Zhenhe Sun,Kai Zhao,Hongtao Zhang,Chenxi Li,Yongsheng Chen
标识
DOI:10.1002/adfm.202010000
摘要
Abstract Among the various advantages of organic photovoltaics (OPVs), the key one is their ability to be a highly flexible renewable energy source. However, the power conversion efficiencies for flexible OPV devices still lag behind those of their rigid counterparts, and their mechanical stability cannot meet the requirements for practical applications at present. These, in particular, depend on flexible transparent electrodes (FTEs). Here, a high‐quality FTE (called FlexAgNE), with the simultaneously combined excellent characteristics, has been tested with a series of efficient active materials for flexible OPV devices, and high performance comparable with rigid counterparts has been achieved. In addition, due to the synergistic effect of FlexAgNE and the upper ZnO transport layer, including strong binding between the polyethylene terephthalate substrate and a hydrophilic polyelectrolyte (the key component of FlexAgNE), together with the capillary force effect of crossed silver nanowires and tight filling of ZnO, the flexible devices demonstrate robust mechanical stability even under extreme bending or folding conditions.
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