谷歌Chrome浏览器插件
订阅小程序
在清言上使用

Effect of oligothiophene -bridge length in D--A star-shaped small molecules on properties and photovoltaic performance in single-component and bulk heterojunction organic solar cells and photodetectors

Yuriy N. Luponosov, Alexander N. Solodukhin, Artur L. Mannanov, Petr S. Savchenko, Benedito A. L. Raul, Svetlana M. Peregudova, Nikolay M. Surin, Artem Bakirov, Maxim A. Shcherbina, Sergei N. Chvalun, Maxim S. Pshenichnikov, Dmitry Yu Paraschuk, Sergey A. Ponomarenko

Materials Today Energy(2021)

引用 12|浏览16
暂无评分
摘要
Donor-acceptor molecules with thiophene fragments as the pi-bridge represent a promising class of materials for organic photovoltaics especially in single-component (SC) organic solar cells (OSCs) and other related applications. However, the effect of the oligothiophene pi-bridge length on physicochemical properties, photophysics, charge transport, and photovoltaic performance of these materials has not been thoroughly addressed. Here, we report on the synthesis and comprehensive investigation of the series of star-shaped donor-acceptor molecules (0T-4T) with triphenylamine as a donor core linked through an oligothiophene pi-bridge of variable length to the terminal hexyl-dicyanovinyl electron-withdrawing groups. We found that variation of the pi-bridge length from 0 to 4 thiophene units strongly impacts their properties such as the solubility, highest occupied molecular orbital energy, optical absorption and photophysics, film morphology, phase behavior, and molecular packing as well as the charge carrier mobility. The performance of the SC and bulk heterojunction OSCs and photodetectors is comprehensively studied and compared. The results obtained provide insight into how to fine-tune and predict properties and photovoltaic performance of small molecules for organic solar cells and photodetectors. (C) 2021 Elsevier Ltd. All rights reserved.
更多
查看译文
关键词
Donor-acceptor triarylamines,Intramolecular charge transfer,Exciton diffusion,Photoluminescence,Ultrafast spectroscopy,Alkyl dicyanovinyl group
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要