Non-fullerene acceptor fibrils enable efficient ternary organic solar cells with 16.6% efficiency

被引:0
作者
Donghui Li
Xiaolong Chen
Jinglong Cai
Wei Li
Mengxue Chen
Yuchao Mao
Baocai Du
Joel A. Smith
Rachel C. Kilbride
Mary E. O’Kane
Xue Zhang
Yuan Zhuang
Pang Wang
Hui Wang
Dan Liu
Richard A. L. Jones
David G. Lidzey
Tao Wang
机构
[1] Wuhan University of Technology,School of Materials Science and Engineering
[2] Wuhan University of Technology,State Key Laboratory of Silicate Materials for Architectures
[3] University of Sheffield,Department of Physics and Astronomy
来源
Science China Chemistry | 2020年 / 63卷
关键词
ternary solar cells; non-fullerene acceptor fibrils; power conversion efficiency;
D O I
暂无
中图分类号
学科分类号
摘要
Optimizing the components and morphology within the photoactive layer of organic solar cells (OSCs) can significantly enhance their power conversion efficiency (PCE). A new A-D-A type non-fullerene acceptor IDMIC-4F is designed and synthesized in this work, and is employed as the third component to prepare high performance ternary solar cells. IDMIC-4F can form fibrils after solution casting, and the presence of this fibrillar structure in the PBDB-T-2F:BTP-4F host confines the growth of donors and acceptors into fine domains, as well as acting as transport channels to enhance electron mobility. Single junction ternary devices incorporating 10 wt% IDMIC-4F exhibit enhanced light absorption and balanced carrier mobility, and achieve a maximum PCE of 16.6% compared to 15.7% for the binary device, which is a remarkable efficiency for OSCs reported in literature. This non-fullerene acceptor fibril network strategy is a promising method to improve the photovoltaic performance of ternary OSCs. [graphic not available: see fulltext]
引用
收藏
页码:1461 / 1468
页数:7
相关论文
共 480 条
  • [1] Li G(2012)undefined Nat Photon 6 153-161
  • [2] Zhu R(2018)undefined Adv Mater 30 1705243-28
  • [3] Yang Y(2014)undefined Adv Mater 26 10-4453
  • [4] Cheng P(2019)undefined Angew Chem Int Ed 58 4442-128
  • [5] Wang R(2018)undefined Nat Mater 17 119-1174
  • [6] Zhu J(2015)undefined Adv Mater 27 1170-833
  • [7] Huang W(2019)undefined Joule 3 819-1865
  • [8] Chang SY(2018)undefined Mater Chem Front 2 1859-15894
  • [9] Meng L(2019)undefined J Mater Chem A 7 15887-90
  • [10] Sun P(2019)undefined Adv Energy Mater 9 1900157-1865