Wide-Bandgap Small Molecular Acceptors Based on a Weak Electron-Withdrawing Moiety for Efficient Polymer Solar Cells

被引:32
|
作者
Gong, Yanting [1 ,2 ]
Kan, Zhipeng [3 ]
Xu, Weidong [4 ,5 ]
Wang, Yang [1 ,2 ]
AlShammari, Sanaa H. [3 ]
Laquai, Frederic [3 ]
Lai, Wen-Yong [1 ,2 ,6 ]
Huang, Wei [1 ,2 ,4 ,5 ,6 ]
机构
[1] Nanjing Univ Posts & Telecommun, Key Lab Organ Elect & Informat Displays, Jiangsu Natl Synerget Innovat Ctr Adv Mat SICAM, 9 Wenyuan Rd, Nanjing 210023, Jiangsu, Peoples R China
[2] Nanjing Univ Posts & Telecommun, Inst Adv Mat, Jiangsu Natl Synerget Innovat Ctr Adv Mat SICAM, 9 Wenyuan Rd, Nanjing 210023, Jiangsu, Peoples R China
[3] King Abdullah Univ Sci & Technol, KAUST Solar Ctr, Phys Sci & Engn Div PSE, Thuwal 239556900, Saudi Arabia
[4] Nanjing Tech Univ NanjingTech, Key Lab Flexible Elect, Jiangsu Natl Synerget Innovat Ctr Adv Mat SICAM, 30 South Puzhu Rd, Nanjing 211816, Jiangsu, Peoples R China
[5] Nanjing Tech Univ NanjingTech, Inst Adv Mat, Jiangsu Natl Synerget Innovat Ctr Adv Mat SICAM, 30 South Puzhu Rd, Nanjing 211816, Jiangsu, Peoples R China
[6] Northwestern Polytech Univ, Shaanxi Inst Flexible Elect, 127 West Youyi Rd, Xian 710072, Shaanxi, Peoples R China
来源
SOLAR RRL | 2018年 / 2卷 / 10期
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
non-fullerene acceptors; organic photovoltaics; polymer solar cells; small molecular acceptors; wide-bandgap acceptors; NON-FULLERENE ACCEPTORS; 13-PERCENT EFFICIENCY; NLO-PHORES; RECOMBINATION; MORPHOLOGY; DONOR; AGGREGATION; DERIVATIVES; GENERATION; PROGRESS;
D O I
10.1002/solr.201800120
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Narrow-bandgap small molecular acceptors (SMAs) with absorption extending into the near-infrared spectral region such as ITIC derivatives are widely investigated, while the development of their wide-bandgap counterparts remains largely unexplored. Wide-bandgap non-fullerene acceptors (NFAs) are highly desirable and beneficial for constructing efficient device layouts such as ternary blend and tandem solar cells that require multiple light-harvesting materials with different regions of absorption. In this contribution, the design and synthesis of two wide-bandgap SMAs (IDT-TBA and IDDT-TBA), consisting of a weak electron-withdrawing moiety (1,3-diethyl-2-thiobarbituric acid, TBA) is presented. Compared to ITIC, this molecular design strategy results in energetically down-shifted HOMO levels and hence much enlarged bandgaps of 1.91eV for IDT-TBA and 1.78eV for IDDT-TBA, respectively. Further photovoltaic performance evaluation demonstrates power conversion efficiencies (PCEs) of 6.5% for IDT-TBA and 7.5% for IDDT-TBA, respectively, when using PBDB-T as the electron donor polymer. In addition, time-delayed collection field (TDCF) experiments suggest that both IDT-TBA and IDDT-TBA based cells exhibit field-independent charge generation with external charge generation efficiencies exceeding 90%, implying negligible geminate recombination losses. The results demonstrate that TBA units are promising and attractive building blocks as weak electron-withdrawing acceptors to construct wide-bandgap high-efficiency SMAs for efficient organic photovoltaic devices.
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页数:8
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