Tetrathiophene-based fully non-fused ring electron acceptors via asymmetric side chain engineering

被引:12
作者
Yang, Qian [1 ]
Wu, Renshuang [1 ]
Yang, Lisi [1 ]
Liu, Wenjing [1 ]
Meng, Xianglin [1 ]
Zhang, Wenjun [1 ]
Shen, Shuaishuai [1 ]
Li, Miao [2 ]
Zhou, Yuanyuan [2 ]
Song, Jinsheng [1 ]
机构
[1] Henan Univ, Engn Res Ctr Nanomat, Kaifeng 475004, Peoples R China
[2] Henan Normal Univ, Sch Mat Sci & Engn, Xinxiang 453007, Peoples R China
基金
中国国家自然科学基金;
关键词
Fully non-fused electron acceptors; Asymmetric side-chain engineering; Molecular conformations; Tetrathiophene; Molecular stacking; POLYMER; EFFICIENCY; CELLS;
D O I
10.1016/j.dyepig.2023.111808
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Side-chain engineering has been considered as one of the most promising strategies to optimize non-fullerene acceptors. In this work, we use side-chain engineering to synthesize three fully non-fused electron acceptors (FNEAs) i.e. two symmetric acceptors (4T-BE and 4T-TO) and one asymmetric acceptor (4T-BOE) by different side chain combination onto the tetrathiophene unit, which could effectively tune the molecular conformations, electronic properties, charge carrier transport, film morphology, and photovoltaic properties. From 4T-BE to 4TBOE and 4T-TO, the molecules present more red-shifted absorption, smaller optical bandgaps, initially rising and then declining LUMO energy levels and stronger intermolecular stacking. When blended with polymer donor PBDB-T, asymmetric 4T-BOE with alkoxy and ester side chains demonstrate a champion PCE of 9.57% with a short-circuit current density (Jsc) of 16.28 mA/cm2, an open circuit voltage (Voc) of 0.87 V, and a fill factor (FF) of 67.50%, which was higher than that of the devices based on PBDB-T:4T-BE and PBDB-T:4T-TO. These results demonstrate that asymmetric side-chain engineering is an especially crucial and effective approach for the design of highly efficient FNEAs.
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页数:8
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  • [1] A History and Perspective of Non-Fullerene Electron Acceptors for Organic Solar Cells
    Armin, Ardalan
    Li, Wei
    Sandberg, Oskar J.
    Xiao, Zuo
    Ding, Liming
    Nelson, Jenny
    Neher, Dieter
    Vandewal, Koen
    Shoaee, Safa
    Wang, Tao
    Ade, Harald
    Heumueller, Thomas
    Brabec, Christoph
    Meredith, Paul
    [J]. ADVANCED ENERGY MATERIALS, 2021, 11 (15)
  • [2] High-performance polymer solar cells with efficiency over 18% enabled by asymmetric side chain engineering of non-fullerene acceptors
    Chen, Shihao
    Feng, Lingwei
    Jia, Tao
    Jing, Jianhua
    Hu, Zhicheng
    Zhang, Kai
    Huang, Fei
    [J]. SCIENCE CHINA-CHEMISTRY, 2021, 64 (07) : 1192 - 1199
  • [3] A Fully Non-fused Ring Acceptor with Planar Backbone and Near-IR Absorption for High Performance Polymer Solar Cells
    Chen, Ya-Nan
    Li, Miao
    Wang, Yunzhi
    Wang, Jing
    Zhang, Ming
    Zhou, Yuanyuan
    Yang, Jianming
    Liu, Yahui
    Liu, Feng
    Tang, Zheng
    Bao, Qinye
    Bo, Zhishan
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (50) : 22714 - 22720
  • [4] An Alkylated Indacenodithieno[3,2-b]thiophene-Based Nonfullerene Acceptor with High Crystallinity Exhibiting Single Junction Solar Cell Efficiencies Greater than 13% with Low Voltage Losses
    Fei, Zhuping
    Eisner, Flurin D.
    Jiao, Xuechen
    Azzouzi, Mohammed
    Rohr, Jason A.
    Han, Yang
    Shahid, Munazza
    Chesman, Anthony S. R.
    Easton, Christopher D.
    McNeill, Christopher R.
    Anthopoulos, Thomas D.
    Nelson, Jenny
    Heeney, Martin
    [J]. ADVANCED MATERIALS, 2018, 30 (08)
  • [5] Fused-Ring Acceptors with Asymmetric Side Chains for High-Performance Thick-Film Organic Solar Cells
    Feng, Shiyu
    Zhang, Cai'e
    Liu, Yahui
    Bi, Zhaozhao
    Zhang, Zhe
    Xu, Xinjun
    Ma, Wei
    Bo, Zhishan
    [J]. ADVANCED MATERIALS, 2017, 29 (42)
  • [6] The Future of Flexible Organic Solar Cells
    Fukuda, Kenjiro
    Yu, Kilho
    Someya, Takao
    [J]. ADVANCED ENERGY MATERIALS, 2020, 10 (25)
  • [7] Latest progress on fully non-fused electron acceptors for high-performance organic solar cells
    Gao, Jianhong
    Zhu, Xiaodong
    Bao, Hanyi
    Feng, Jibao
    Gao, Xiang
    Liu, Zhitian
    Ge, Ziyi
    [J]. CHINESE CHEMICAL LETTERS, 2023, 34 (08)
  • [8] Achieving 19% Power Conversion Efficiency in Planar-Mixed Heterojunction Organic Solar Cells Using a Pseudosymmetric Electron Acceptor
    Gao, Wei
    Qi, Feng
    Peng, Zhengxing
    Lin, Francis R.
    Jiang, Kui
    Zhong, Cheng
    Kaminsky, Werner
    Guan, Zhiqiang
    Lee, Chun-Sing
    Marks, Tobin J.
    Ade, Harald
    Jen, Alex K-Y
    [J]. ADVANCED MATERIALS, 2022, 34 (32)
  • [9] Asymmetrical Ladder-Type Donor-Induced Polar Small Molecule Acceptor to Promote Fill Factors Approaching 77% for High-Performance Nonfullerene Polymer Solar Cells
    Gao, Wei
    Zhang, Miao
    Liu, Tao
    Ming, Ruijie
    An, Qiaoshi
    Wu, Kailong
    Xie, Dongjun
    Luo, Zhenghui
    Zhong, Cheng
    Liu, Feng
    Zhang, Fujun
    Yan, He
    Yang, Chuluo
    [J]. ADVANCED MATERIALS, 2018, 30 (26)
  • [10] A Polycrystalline Polymer Donor as Pre-Aggregate toward Ordered Molecular Aggregation for 19.3% Efficiency Binary Organic Solar Cells
    Guo, Chuanhang
    Fu, Yiwei
    Li, Donghui
    Wang, Liang
    Zhou, Bojun
    Chen, Chen
    Zhou, Jing
    Sun, Yuandong
    Gan, Zirui
    Liu, Dan
    Li, Wei
    Wang, Tao
    [J]. ADVANCED MATERIALS, 2023, 35 (41)