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A chlorinated non-fullerene acceptor for efficient polymer solar cells 被引量:5

A chlorinated non-fullerene acceptor for efficient polymer solar cells
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摘要 Improving the performance and reducing the manufacturing costs are the main directions for the development of organic solar cells in the future.Here,the strategy that uses chemical structure modification to optimize the photoelectric properties is reported.A new narrow bandgap(1.30 eV)chlorinated non-fullerene electron acceptor(Y15),based on benzo[d][1,2,3] triazole with two 3-undecylthieno[2’,3’:4,5] thieno[3,2-b] pyrrole fused-7-heterocyclic ring,with absorption edge extending to the near-infrared(NIR) region,namely A-DA’D-A type structure,is designed and synthesized.Its electrochemical and optoelectronic properties are systematically investigated.Benefitting from its NIR light harvesting,the fabricated photovoltaic devices based on Y15 deliver a high power conversion efficiency(PCE) of 14.13%,when blending with a wide bandgap polymer donor PM6.Our results show that the A-DA’D-A type molecular design and application of near-infrared electron acceptors have the potential to further improve the PCE of polymer solar cells(PSCs). Improving the performance and reducing the manufacturing costs are the main directions for the development of organic solar cells in the future.Here,the strategy that uses chemical structure modification to optimize the photoelectric properties is reported.A new narrow bandgap(1.30 eV)chlorinated non-fullerene electron acceptor(Y15),based on benzo[d][1,2,3] triazole with two 3-undecylthieno[2’,3’:4,5] thieno[3,2-b] pyrrole fused-7-heterocyclic ring,with absorption edge extending to the near-infrared(NIR) region,namely A-DA’D-A type structure,is designed and synthesized.Its electrochemical and optoelectronic properties are systematically investigated.Benefitting from its NIR light harvesting,the fabricated photovoltaic devices based on Y15 deliver a high power conversion efficiency(PCE) of 14.13%,when blending with a wide bandgap polymer donor PM6.Our results show that the A-DA’D-A type molecular design and application of near-infrared electron acceptors have the potential to further improve the PCE of polymer solar cells(PSCs).
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第12期2343-2346,共4页 中国化学快报(英文版)
基金 financially supported by the National Natural Science Foundation of China (Nos.51811530096, 21875286) the National Key Research & Development Projects of China (No.2017YFA0206600) Science Fund for Distinguished Young Scholars of Hunan Province (No.2017JJ1029)
关键词 Electron acceptor Y15 Chlorinated Non-fullerene electron acceptors Efficient polymer solar cells Narrow bandgap Electron acceptor Y15 Chlorinated Non-fullerene electron acceptors Efficient polymer solar cells Narrow bandgap
作者简介 Corresponding author:Yingping Zou,E-mail address:yingpingzou@csu.edu.cn.
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