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Stability improvement mechanism due to less charge accumulation in ternary polymer solar cells

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摘要 Ternary polymer solar cells based on a thiazolothiazole-based polymer donor(PTzBT)and a fullerene acceptor(PC61BM)have attracted attention because they show high efficiency and stability by addition of a non-fullerene acceptor(ITIC).However,the performance improvement mechanism is not completely elucidated.Here,we show the stability improvement mechanism due to less charge accumulation in the PTzBT cells with ITIC using operando electron spin resonance from a microscopic viewpoint.We observed two correlations between device performance and number of spins(N_(spin))under solar irradiation.One correlation is the decrease in short-circuit current and the N_(spin) increase in electrons on PC_(61)BM and holes in PTzBT,where the ITIC addition causes the less these N_(spin).The other correlation is the increase in open-circuit voltage and the N_(spin) decrease in holes in ZnO.These findings explain the stability improvement mechanism,showing the correlation between less charge accumulation and higher stability,which is valuable for the development of further efficient and stable polymer solar cells.
出处 《npj Flexible Electronics》 SCIE 2022年第1期194-203,共10页 npj-柔性电子(英文)
基金 supported by JSPS KAKENHI Grant Number JP19K21955 by JST PRESTO by The MIKIYA Science And Technology Foundation by Iketani Science and Technology Foundation by The Iwatani Naoji Foundation by JST SPRING Grant Number JPMJSP2124 by JST ALCA Grant Number JPMJAL1603 by JST MIRAI Grant Number JPMJMI20C5,Japan.
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