Ternary organic solar cells: Improved optical and morphological properties allow an enhanced efficiency

The addition of the third component ITIC and PTB7-Th broadens the absorption spectra and improve blends morphology, leading to an increase in the efficiency of the ternary organic solar cells by 8% and 13%, respectively. [Display omitted] The power conversion efficiency (PCE) of OFQx-T:PC71BM blend...

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Veröffentlicht in:Chinese chemical letters 2021-04, Vol.32 (4), p.1359-1362
Hauptverfasser: Zhao, Yingying, Zhou, Liuyang, Wu, Xiaobo, Wang, Xiaosha, Li, Yungui, Qi, Yazhou, Jiang, Lihui, Chen, Guohui, Zou, Yingping
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Sprache:eng
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Zusammenfassung:The addition of the third component ITIC and PTB7-Th broadens the absorption spectra and improve blends morphology, leading to an increase in the efficiency of the ternary organic solar cells by 8% and 13%, respectively. [Display omitted] The power conversion efficiency (PCE) of OFQx-T:PC71BM blend films reaches 7.59%. On this basis, ternary organic solar cells (OSCs) were fabricated with ITIC or PTB7-Th as the third component. The ternary OSCs with 50 wt% ITIC in acceptors exhibits an enhanced efficiency, from 7.59% to 8.17%. Also, the PCE of ternary OSCs with 50 wt% PTB7-Th in donors achieves 8.72%, which is 13% higher than that of binary OSCs. The PCE improvement of two ternary OSCs is mainly due to the increase of short-circuit current density (Jsc), which can be attributed to the complementary absorption spectra and improved film morphology. This work suggests that the selection of an appropriate third component plays a critical role in improving the PCE of ternary OSCs.
ISSN:1001-8417
1878-5964
DOI:10.1016/j.cclet.2020.09.032