Nonhalogenated Solvent-Processed Efficient Ternary All-Polymer Solar Cells Enabled by the Introduction of a Naphthyloxy Group into the Side Chain of Polymer Donors

被引:1
作者
Yadav, Priyanka [1 ]
Kim, Hyerin [1 ]
Gokulnath, Thavamani [1 ]
Yoo, Jin Soo [1 ]
Jeon, Myeong Jin [1 ]
Kumaresan, Raja [1 ]
Park, Ho-Yeol [1 ]
Jin, Sung-Ho [1 ]
机构
[1] Pusan Natl Univ, Inst Plast Informat & Energy Mat, Sustainable Utilizat Photovolta Energy Res Ctr ERC, Dept Chem Educ,Grad Dept Chem Mat, Busan 46241, South Korea
基金
新加坡国家研究基金会;
关键词
all-polymer solar cells; new pi-conjugated polymerdonor; nonhalogenated solvent; side chain engineering; wide-band-gap polymers; additive-free; o-xylene-processed; MORPHOLOGY; ACCEPTORS;
D O I
10.1021/acsami.4c13569
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Conjugated polymer donors are crucial for enhancing the power conversion efficiencies (PCEs) in all-polymer solar cells (All-PSCs) in nonhalogenated solvents. In this work, three wide-band-gap polymer donors (Sil-D1, Ph-Sil-D1, and Nap-Sil-D1) based on dithienobenzothiadiazole (DTBT) and benzodithiophene (BDT) donor moieties optimized by side chain engineering were designed and synthesized. Alkyl (Sil-D1), phenyloxy (Ph-Sil-D1), and naphthyloxy (Nap-Sil-D1) alkyl siloxane side chain units were incorporated into these polymer donors, respectively. Notably, the Nap-Sil-D1 polymer donor had a greater conjugation length, pi-electron delocalization, and improved dipole moment. The deepest highest occupied molecular orbital level of Nap-Sil-D1, with a high absorption coefficient, showed better aggregation properties. In addition, reduced bimolecular recombination and trap-state density generated a high charge transfer to cause a significant enhancement of open-circuit voltage, current density, and fill factor values of 0.94 V, 25.5 mA/cm2, and 70.4%, respectively, for the Nap-Sil-D1-blended All-PSC ternary device (PM6:Nap-Sil-D1:PY-IT), with the highest PCE of 16.8% in the o-xylene solvent, compared to other polymers (Sil-D1 and Ph-Sil-D1) with PCEs of 15.5 and 16.2%. As a result, this optimized device architecture was found to be the most promising as a nonhalogenated solvent processed in additive-free ternary All-PSCs with good stability.
引用
收藏
页码:62082 / 62092
页数:11
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