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Silaindacenodithiophene-Based Fused-Ring Non-Fullerene Electron Acceptor for Efficient Polymer Solar Cells
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作者 yaowen nian Zhen Wang +5 位作者 Haiying Jiang Shizhen Feng Suhan Li Lianjie Zhang Yong Cao Junwu Chen 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2018年第6期495-501,共7页
In this work, a new A-D-A type nonfuUerene small molecular acceptor SilDT-IC, with a fused-ring silaindacenodithiophene (SilDT) as D unit and 2-(3-oxo-2,3-dihydroinden-l-ylidene)malononitrile (INCN) as the end A... In this work, a new A-D-A type nonfuUerene small molecular acceptor SilDT-IC, with a fused-ring silaindacenodithiophene (SilDT) as D unit and 2-(3-oxo-2,3-dihydroinden-l-ylidene)malononitrile (INCN) as the end A unit, was design and synthesized. The SilDT-IC film shows absorption peak and edge at 695 and 733 nm, respectively. The HOMO and LUMO of SilDT-IC are of -5.47 and -3.78 eV, respectively. Compared with carbon-bridging, the Si-bridging can result in an upper-lying LUMO level of an acceptor, which is benefit to achieve a higher open-circuit voltage in polymer solar cells (PSCs). Complementary absorption and suitable energy level alignment between SilDT-IC and wide bandgap polymer donor PBDB-T were found. For the PBDB-T:SilDT-IC based inverted PSCs, a D/A ratio of 1 : 1 was optimal to achieve a power conversion efficiency (PCE) of 7.27%. With thermal annealing (TA) of the blend film, a higher PCE of 8.16% could be realized due to increasing of both short-circuit current density and fill factor. After the TA treatment, hole and electron mobilities were elevated to 3.42 × 10-4 and 1.02 × 10-4 cm2·V-1.s-1, respectively. The results suggest that the SilDT, a Si-bridged fused ring, is a valuable D unit to construct efficient nonfullerene acceptors for PSCs. 展开更多
关键词 polymer solar cells nonfullerene accepter silaindacenodithiophene thermal annealing
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