High-performance organic solar cells based on polymer donor/small molecule donor/nonfullerene acceptor ternary blends

被引:43
作者
Dai, Shuixing [1 ]
Chandrabose, Sreelakshmi [2 ]
Xin, Jingming [3 ]
Li, Tengfei [1 ]
Chen, Kai [2 ]
Xue, Peiyao [1 ]
Liu, Kuan [1 ]
Zhou, Ke [3 ]
Ma, Wei [3 ]
Hodgkiss, Justin M. [2 ]
Zhan, Xiaowei [1 ]
机构
[1] Peking Univ, Coll Engn, Key Lab Polymer Chem & Phys, Dept Mat Sci & Engn,Minist Educ, Beijing 100871, Peoples R China
[2] Victoria Univ Wellington, MacDiarmid Inst Adv Mat & Nanotechnol, Sch Chem & Phys Sci, Wellington 6010, New Zealand
[3] Xi An Jiao Tong Univ, State Key Lab Mech Behav Mat, Xian 710049, Shaanxi, Peoples R China
关键词
HIGH-EFFICIENCY; NONFULLERENE ACCEPTORS; ELECTRON-ACCEPTOR; SIDE-CHAINS; FULLERENE; PHOTOVOLTAICS;
D O I
10.1039/c8ta11637g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We used mid-bandgap small molecule donor TR as a third component to fabricate ternary nonfullerene organic solar cells (OSCs) based on narrow-bandgap polymer donor PTB7-Th and narrow-bandgap nonfullerene acceptor FOIC. TR exhibits full miscibility with PTB7-Th and efficient energy transfer to PTB7-Th, enhances stacking of PTB7-Th, hole mobility and charge generation of the blends, and ultimately improves device performance. Compared with the binary PTB7-Th/FOIC blend, the ternary device with 25% TR (w/w) yields simultaneously improved open-circuit voltage, short-circuit current density and fill factor. Finally, single-junction OSCs based on the ternary PTB7-Th/TR/FOIC blend yield power conversion efficiency as high as 13.1%, higher than the binary OSCs (12.1%). The ternary device efficiency exhibits high tolerance to thickness variation (>12% in the range of 80-200 nm). Transient absorption spectroscopy confirms the importance of long-range resonant energy transfer from donor to acceptor phases.
引用
收藏
页码:2268 / 2274
页数:7
相关论文
共 54 条
[1]  
Baran D, 2017, NAT MATER, V16, P363, DOI [10.1038/NMAT4797, 10.1038/nmat4797]
[2]   High fabrication yield organic tandem photovoltaics combining vacuum- and solution-processed subcells with 15% efficiency [J].
Che, Xiaozhou ;
Li, Yongxi ;
Qu, Yue ;
Forrest, Stephen R. .
NATURE ENERGY, 2018, 3 (05) :422-427
[3]   Unique Energy Alignments of a Ternary Material System toward High-Performance Organic Photovoltaics [J].
Cheng, Pei ;
Wang, Jiayu ;
Zhang, Qianqian ;
Huang, Wenchao ;
Zhu, Jingshuai ;
Wang, Rui ;
Chang, Sheng-Yung ;
Sun, Pengyu ;
Meng, Lei ;
Zhao, Hongxiang ;
Cheng, Hao-Wen ;
Huang, Tianyi ;
Liu, Yuqiang ;
Wang, Chaochen ;
Zhu, Chenhui ;
You, Wei ;
Zhan, Xiaowei ;
Yang, Yang .
ADVANCED MATERIALS, 2018, 30 (28)
[4]   Ternary System with Controlled Structure: A New Strategy toward Efficient Organic Photovoltaics [J].
Cheng, Pei ;
Wang, Rui ;
Zhu, Jingshuai ;
Huang, Wenchao ;
Chang, Sheng-Yung ;
Meng, Lei ;
Sun, Pengyu ;
Cheng, Hao-Wen ;
Qin, Meng ;
Zhu, Chenhui ;
Zhan, Xiaowei ;
Yang, Yang .
ADVANCED MATERIALS, 2018, 30 (08)
[5]   Next-generation organic photovoltaics based on non-fullerene acceptors [J].
Cheng, Pei ;
Li, Gang ;
Zhan, Xiaowei ;
Yang, Yang .
NATURE PHOTONICS, 2018, 12 (03) :131-142
[6]   Realizing Small Energy Loss of 0.55 eV, High Open-Circuit Voltage > 1 V and High Efficiency > 10% in Fullerene-Free Polymer Solar Cells via Energy Driver [J].
Cheng, Pei ;
Zhang, Mingyu ;
Lau, Tsz-Ki ;
Wu, Yao ;
Jia, Boyu ;
Wang, Jiayu ;
Yan, Cenqi ;
Qin, Meng ;
Lu, Xinhui ;
Zhan, Xiaowei .
ADVANCED MATERIALS, 2017, 29 (11)
[7]   Alloy Acceptor: Superior Alternative to PCBM toward Efficient and Stable Organic Solar Cells [J].
Cheng, Pei ;
Yan, Cenqi ;
Wu, Yang ;
Wang, Jiayu ;
Qin, Meng ;
An, Qiaoshi ;
Cao, Jiamin ;
Huo, Lijun ;
Zhang, Fujun ;
Ding, Liming ;
Sun, Yanming ;
Ma, Wei ;
Zhan, Xiaowei .
ADVANCED MATERIALS, 2016, 28 (36) :8021-8028
[8]   Versatile third components for efficient and stable organic solar cells [J].
Cheng, Pei ;
Zhan, Xiaowei .
MATERIALS HORIZONS, 2015, 2 (05) :462-485
[9]   High-Performance Organic Solar Cells Based on a Small Molecule with Alkylthio-Thienyl-Conjugated Side Chains without Extra Treatments [J].
Cui, Chaohua ;
Guo, Xia ;
Min, Jie ;
Guo, Bing ;
Cheng, Xiao ;
Zhang, Maojie ;
Brabec, Christoph J. ;
Li, Yongfang .
ADVANCED MATERIALS, 2015, 27 (45) :7469-+
[10]   Enhancing the Performance of Polymer Solar Cells via Core Engineering of NIR-Absorbing Electron Acceptors [J].
Dai, Shuixing ;
Li, Tengfei ;
Wang, Wei ;
Xiao, Yiqun ;
Lau, Tsz-Ki ;
Li, Zeyuan ;
Liu, Kuan ;
Lu, Xinhui ;
Zhan, Xiaowei .
ADVANCED MATERIALS, 2018, 30 (15)