Side chain modification: an effective approach to modulate the energy level of benzodithiophene based polymers for high-performance solar cells
Haimei Wu(Microbiology Institute of Shaanxi), Yong Cao(Southwest Forestry University), Yuan Xie(South China University of Technology), Hongbin Wu(China Earthquake Administration), Biao Xiao(Jianghan University), Zhongwei An(Microbiology Institute of Shaanxi), Baofeng Zhao(Microbiology Institute of Shaanxi), Wei Wei(Nanjing University of Posts and Telecommunications), Weiping Wang(Xi’an University), Hui Chen(State Key Laboratory of Luminescent Materials and Devices), Chao Gao(Modern Electron (United States)), Zhaoqi Guo(Northwest University)
Cited by 40
Related Papers
Improved High-Efficiency Organic Solar Cells via Incorporation of a Conjugated Polyelectrolyte Interlayer
|Journal of the American Chemical Society|2011|558
Nonfullerene Polymer Solar Cells Based on a Main-Chain Twisted Low-Bandgap Acceptor with Power Conversion Efficiency of 13.2%
|ACS Energy Letters|2018|127
19.28% Efficiency and Stable Polymer Solar Cells Enabled by Introducing an NIR‐Absorbing Guest Acceptor
|Advanced Functional Materials|2023|123
Fluorine substituted thiophene–quinoxalinecopolymer to reduce the HOMO level and increase the dielectric constant for high open-circuit voltage organic solar cells
|Journal of Materials Chemistry C|2012|107
Bright short-wavelength infrared organic light-emitting devices
|Nature Photonics|2022|89