Literature DB >> 34773418

High Miscibility Compatible with Ordered Molecular Packing Enables an Excellent Efficiency of 16.2% in All-Small-Molecule Organic Solar Cells.

Lili Zhang1,2, Xiangwei Zhu1, Dan Deng1, Zhen Wang3, Ziqi Zhang1, Yi Li1, Jianqi Zhang1, Kun Lv1, Lixuan Liu1, Xuning Zhang1, Huiqiong Zhou1, Harald Ade3, Zhixiang Wei1.   

Abstract

In all-small-molecule organic solar cells (ASM-OSCs), a high short-circuit current (Jsc ) usually needs a small phase separation, while a high fill factor (FF) is generally realized in a highly ordered packing system. However, small domain and ordered packing always conflicted each other in ASM-OSCs, leading to a mutually restricted Jsc and FF. In this study, alleviation of the previous dilemma by the strategy of obtaining simultaneous good miscibility and ordered packing through modulating homo- and heteromolecular interactions is proposed. By moving the alkyl-thiolation side chains from the para- to the meta-position in the small-molecule donor, the surface tension and molecular planarity are synchronously enhanced, resulting in compatible properties of good miscibility with acceptor BTP-eC9 and strong self-assembly ability. As a result, an optimized morphology with multi-length-scale domains and highly ordered packing is realized. The device exhibits a long carrier lifetime (39.8 μs) and fast charge collection (15.5 ns). A record efficiency of 16.2% with a high FF of 75.6% and a Jsc of 25.4 mA cm-2 in the ASM-OSCs is obtained. These results demonstrate that the strategy of simultaneously obtaining good miscibility with high crystallinity could be an efficient photovoltaic material design principle for high-performance ASM-OSCs.
© 2021 Wiley-VCH GmbH.

Entities:  

Keywords:  all-small-molecule solar cells; miscibility; ordered molecular packing; organic solar cells; phase separation

Year:  2021        PMID: 34773418     DOI: 10.1002/adma.202106316

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  1 in total

1.  "N-π-N" Type Oligomeric Acceptor Achieves an OPV Efficiency of 18.19% with Low Energy Loss and Excellent Stability.

Authors:  Lili Zhang; Ziqi Zhang; Dan Deng; Huiqiong Zhou; Jianqi Zhang; Zhixiang Wei
Journal:  Adv Sci (Weinh)       Date:  2022-06-16       Impact factor: 17.521

  1 in total

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