接受者
材料科学
电子受体
堆积
相(物质)
电子供体
富勒烯
钝化
化学
图层(电子)
光化学
纳米技术
物理
凝聚态物理
有机化学
催化作用
生物化学
作者
Chunxin Chen,Wenxing Liu,Xi Guan,Jidong Zhang,Qingqing Yang,Dashan Qin
标识
DOI:10.1002/pssa.202000320
摘要
Inverted fullerene organic solar cells with cathode modifying layers (CML) of ZnO/electron acceptor/polyethylenimine ethoxylated (PEIE) are fabricated, where electron acceptor is either [6,6]‐phenyl C 71 ‐butyric acid methyl ester (PC 71 BM) or a nonfullerene acceptor (IDIC). Compared to the devices based on conventional ZnO and ZnO/PEIE, the ones based on ZnO/PC 71 BM/PEIE and ZnO/IDIC/PEIE show increased short‐circuit current densities ( J SC ), demonstrating both PC 71 BM and IDIC interlayers enhance the exciton splitting in donor phase located at the bottom of photoactive layer. The nearly same values of J SC based on ZnO/PC 71 BM/PEIE and ZnO/IDIC/PEIE imply the PC 71 BM and IDIC interlayers have almost identical capabilities of splitting excitons in donor phase, governed by the quadrupolarities and stacking modes of electron acceptors. The PC 71 BM and IDIC interlayers passivate the oxygen‐deficient defects of ZnO surface, leading to the increases in fill factor (FF) of device; the ZnO/IDIC/PEIE gives larger FF than the ZnO/PC 71 BM/PEIE, indicating IDIC passivate ZnO more effectively than PC 71 BM. The current research provides some helpful insights into developing high‐performance electron acceptors.
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