A non-fullerene acceptor with a diagnostic morphological handle for streamlined screening of donor materials in organic solar cells

被引:41
|
作者
McAfee, Seth M. [1 ]
Payne, Abby-Jo [1 ]
Dayneko, Sergey V. [1 ]
Kini, Gururaj P. [2 ]
Song, Chang Eun [2 ]
Lee, Jong-Cheol [2 ]
Welch, Gregory C. [1 ]
机构
[1] Univ Calgary, Dept Chem, 2500 Univ Dr NW, Calgary, AB T2N 1N4, Canada
[2] KRICT, Adv Mat Div, 141 Gajeongro, Yuseong 34114, Daejeon, South Korea
基金
加拿大自然科学与工程研究理事会;
关键词
PERYLENE DIIMIDE DIMERS; HIGH-EFFICIENCY; DIRECT (HETERO)ARYLATION; DIRECT HETEROARYLATION; PHOTOVOLTAIC CELLS; PERFORMANCE; AIR; OPTIMIZATION; ELECTRONICS; DESIGN;
D O I
10.1039/c7ta05282k
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Utilizing the N-annulated PDI acceptor PDI-DPP-PDI, a simple air-processed and air-tested organic photovoltaic device fabrication procedure has been established to streamline the screening of donor materials. Post-deposition solvent vapour annealing of the active layer blend results in a preferential reorganization dictated by PDI-DPP-PDI and is responsible for significant increases in device performance. Employing this method, a series of low-cost and scalable donor polymers were screened to help select promising candidates as alternatives to the expensive high-performance donor polymer PTB7-Th. Universal improvements in performance upon solvent vapour annealing with a range of donor polymers highlighted the advantages of PDI-DPP-PDI and this post-deposition treatment. This facile screening protocol identified PDTT-BOBT as the most suitable PTB7-Th alternative in the surveyed series, with the best device efficiencies reaching 4.5% PCE compared to control devices with PTB7-Th at 4.6% PCE.
引用
收藏
页码:16907 / 16913
页数:7
相关论文
共 50 条
  • [31] Photoinduced spin-orbital coupling effect at donor: acceptor interface in non-fullerene organic solar cells
    Duan, Jiashun
    Feng, Kai
    Xu, Ling
    ORGANIC ELECTRONICS, 2022, 109
  • [32] Photostability of Fullerene and Non-Fullerene Polymer Solar Cells: The Role of the Acceptor
    Doumon, Nutifafa Y.
    Dryzhov, Mikhail V.
    Houard, Felix V.
    Le Corre, Vincent M.
    Chatri, Azadeh Rahimi
    Christodoulis, Panagiotis
    Koster, L. Jan Anton
    ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (08) : 8310 - 8318
  • [33] Non-Fullerene Acceptors for Organic Solar Cells
    Trukhanov, V. A.
    Paraschuk, D. Yu.
    POLYMER SCIENCE SERIES C, 2014, 56 (01) : 72 - 83
  • [34] Non-fullerene acceptors for organic solar cells
    V. A. Trukhanov
    D. Yu. Paraschuk
    Polymer Science Series C, 2014, 56 : 72 - 83
  • [35] Non-fullerene acceptors for organic solar cells
    Cenqi Yan
    Stephen Barlow
    Zhaohui Wang
    He Yan
    Alex K.-Y. Jen
    Seth R. Marder
    Xiaowei Zhan
    Nature Reviews Materials, 3
  • [36] Donor polymer design enables efficient non-fullerene organic solar cells
    Zhengke Li
    Kui Jiang
    Guofang Yang
    Joshua Yuk Lin Lai
    Tingxuan Ma
    Jingbo Zhao
    Wei Ma
    He Yan
    Nature Communications, 7
  • [37] Donor polymer design enables efficient non-fullerene organic solar cells
    Li, Zhengke
    Jiang, Kui
    Yang, Guofang
    Lai, Joshua Yuk Lin
    Ma, Tingxuan
    Zhao, Jingbo
    Ma, Wei
    Yan, He
    NATURE COMMUNICATIONS, 2016, 7
  • [38] Non-fullerene acceptors for organic solar cells
    Yan, Cenqi
    Barlow, Stephen
    Wang, Zhaohui
    Yan, He
    Jen, Alex K. -Y.
    Marder, Seth R.
    Zhan, Xiaowei
    NATURE REVIEWS MATERIALS, 2018, 3 (03):
  • [39] Deciphering the role of invited guest bridges in non-fullerene acceptor materials for high performance organic solar cells
    Janjua, Muhammad Ramzan Saeed Ashraf
    SYNTHETIC METALS, 2021, 279
  • [40] Machine learning for accelerating the discovery of high-performance donor/acceptor pairs in non-fullerene organic solar cells
    Wu, Yao
    Guo, Jie
    Sun, Rui
    Min, Jie
    NPJ COMPUTATIONAL MATERIALS, 2020, 6 (01)