离域电子
有机太阳能电池
富勒烯
激子
接受者
材料科学
波函数
化学物理
电子受体
电子
分子物理学
原子物理学
化学
凝聚态物理
光化学
物理
聚合物
量子力学
复合材料
作者
Guichuan Zhang,Xiankai Chen,Jingyang Xiao,Philip C. Y. Chow,Minrun Ren,Grit Kupgan,Xuechen Jiao,Christopher C. S. Chan,Xiaoyan Du,Ruoxi Xia,Ziming Chen,Jun Yuan,Yunqiang Zhang,Shoufeng Zhang,Yidan Liu,Yingping Zou,He Yan,Kam Sing Wong,Veaceslav Coropceanu,Ning Li
标识
DOI:10.1038/s41467-020-17867-1
摘要
Abstract A major challenge for organic solar cell (OSC) research is how to minimize the tradeoff between voltage loss and charge generation. In early 2019, we reported a non-fullerene acceptor (named Y6) that can simultaneously achieve high external quantum efficiency and low voltage loss for OSC. Here, we use a combination of experimental and theoretical modeling to reveal the structure-property-performance relationships of this state-of-the-art OSC system. We find that the distinctive π–π molecular packing of Y6 not only exists in molecular single crystals but also in thin films. Importantly, such molecular packing leads to (i) the formation of delocalized and emissive excitons that enable small non-radiative voltage loss, and (ii) delocalization of electron wavefunctions at donor/acceptor interfaces that significantly reduces the Coulomb attraction between interfacial electron-hole pairs. These properties are critical in enabling highly efficient charge generation in OSC systems with negligible donor-acceptor energy offset.
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