Solvent Engineering for Layer Formation Control with Cost-Effective Hole Transport Layer in High-Efficiency Perovskite Solar Cell

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초록

Among hole transport materials (HTMs), 2,2 ',7,7 '-Tetrakis(N,N-di-p-methoxyphenylamino)-9,9 '-spirobifluorene (spiro-OMeTAD) is the most frequently adopted, due to its suitable energy band level in conventional-type perovskite solar cells (PSCs). However, the high price of spiro-OMeTAD is an obstacle faced in its research and commercialization. In our previous work, we introduced a low-cost HTM, (E,E,E,E)-4,4 ',4 '',4 & tprime;-[Benzene-1,2,4,5-tetrayltetrakis(ethene-2,1-diyl)]tetrakis[N,N-bis(4-methoxyphenyl)aniline] (alpha 2); however, it was immiscible in the conventional solvent chlorobenzene, leading to the adoption of dichloromethane (DCM) as an alternative. Nevertheless, its high vapor pressure led to poor reproducibility, limiting its practical applicability. To address this issue, we investigated alternative solvents to DCM to facilitate the application of alpha 2 to dichloride alkane materials, from 1,2-dichloroethane (DCE) to 1,4-dichlorobutane. In these materials, DCE exhibits the most superior properties in terms of layer formation control, due to its vapor pressure in spin-coating. Accordingly, a PSC containing alpha 2-DCE HTL showed high performance, with 1.15V of open-circuit voltage and a 22.7% power conversion efficiency.

키워드

perovskite solar cellhole transport materialsolvent engineeringVAPOR-PRESSURESVOLATILITY
제목
Solvent Engineering for Layer Formation Control with Cost-Effective Hole Transport Layer in High-Efficiency Perovskite Solar Cell
저자
Kim, JinyoungKim, Gyu MinOh, Se Young
DOI
10.3390/cryst15040375
발행일
2025-04-18
유형
Article
저널명
Crystals
15
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