接受者
富勒烯
聚合物
能量转换效率
开路电压
材料科学
共轭体系
聚合物太阳能电池
轨道能级差
有机太阳能电池
短路
光化学
光伏系统
光电子学
电压
化学
分子
有机化学
物理
凝聚态物理
生物
量子力学
复合材料
生态学
作者
Haijun Bin,Liang Gao,Zhiguo Zhang,Yankang Yang,Yindong Zhang,Chunfeng Zhang,Shanshan Chen,Ling‐Wei Xue,Changduk Yang,Min Xiao,Yongfang Li
摘要
Abstract Simutaneously high open circuit voltage and high short circuit current density is a big challenge for achieving high efficiency polymer solar cells due to the excitonic nature of organic semdonductors. Herein, we developed a trialkylsilyl substituted 2D-conjugated polymer with the highest occupied molecular orbital level down-shifted by Si–C bond interaction. The polymer solar cells obtained by pairing this polymer with a non-fullerene acceptor demonstrated a high power conversion efficiency of 11.41% with both high open circuit voltage of 0.94 V and high short circuit current density of 17.32 mA cm −2 benefitted from the complementary absorption of the donor and acceptor, and the high hole transfer efficiency from acceptor to donor although the highest occupied molecular orbital level difference between the donor and acceptor is only 0.11 eV. The results indicate that the alkylsilyl substitution is an effective way in designing high performance conjugated polymer photovoltaic materials.
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