活动层
材料科学
四极
有机太阳能电池
小分子
图层(电子)
挥发
纳米技术
分子
化学物理
化学工程
有机化学
聚合物
复合材料
原子物理学
化学
物理
工程类
薄膜晶体管
生物化学
作者
Runnan Yu,Huifeng Yao,Ye Xu,Jiayao Li,Ling Hong,Tao Zhang,Yong Cui,Zhongxiang Peng,Mengyuan Gao,Long Ye,Zhan’ao Tan,Jianhui Hou
标识
DOI:10.1002/adfm.202010535
摘要
Abstract Developing novel solid additives has been regarded as a promising strategy to achieve highly efficient organic solar cells with good stability and reproducibility. Herein, a small molecule, 2,2′‐(perfluoro‐1,4‐phenylene)dithiophene (DTBF), designed with high volatility and a strong quadrupole moment, is applied as a solid additive to implement active layer morphology control in organic solar cells. Systematic theory simulations have revealed the charge distribution of DTBF and its analog and their non‐covalent interaction with the active layer materials. Benefitting from the more vital charge–quadrupole interaction, the introduction, and volatilization of DTBF effectively induced more regular and condensed molecular packing in the active layer, leading to enhanced photoelectric properties. Thus, high efficiency of over 17% is obtained in the DTBF‐processed devices, which is higher than that of the control devices. Further application of DTBF in different active layer systems contributed to a deeper comprehension of this type of additive. This study highlights a facile approach to optimizing the active layer morphology by finely manipulating the quadrupole moment of volatile solid additives.
科研通智能强力驱动
Strongly Powered by AbleSci AI