Unveiling the important role of non-fullerene acceptors crystallinity on optimizing nanomorphology and charge transfer in ternary organic solar cells

被引:11
|
作者
Zhang, Kang-Ning [1 ]
Bi, Peng-Qing [1 ]
Wen, Zhen-Chuan [1 ]
Niu, Meng-Si [1 ]
Chen, Zhi-Hao [1 ]
Wang, Tong [1 ]
Feng, Lin [1 ]
Yang, Jun-Liang [2 ]
Hao, Xiao-Tao [1 ,3 ]
机构
[1] Shandong Univ, Sch Phys, State Key Lab Crystal Mat, Jinan 250100, Shandong, Peoples R China
[2] Cent S Univ, Sch Phys & Elect, Hunan Key Lab Super Microstruct & Ultrafast Proc, Changsha 410083, Hunan, Peoples R China
[3] Univ Melbourne, Sch Chem, ARC Ctr Excellence Exciton Sci, Parkville, Vic 3010, Australia
基金
中国国家自然科学基金;
关键词
Organic solar cells; Charge transfer; Non-fullerene acceptors; RESONANCE ENERGY-TRANSFER; NONFULLERENE ACCEPTORS; HIGHLY EFFICIENT; PERFORMANCE; DONOR; POLY(3-HEXYLTHIOPHENE);
D O I
10.1016/j.orgel.2018.07.001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The crystallinity of non-fullerene acceptors as the third component has an important role on nanomorphology optimization and charge transfer dynamics of ternary organic solar cells (OSCs). Herein, efficient ternary OSCs were fabricated by incorporating two typical non-fullerene acceptors with different crystallinity, (Z)-5-{[5-(15-{5-[(Z)-(3-Ethyl-4-oxo-2-thioxo-1,3-thiazolidin-5-ylidene)methyl]-8-thia-7.9-diazabicyclo [4.3.0] nona-1 (9),2,4,6-tetraen-2-yl}-9,9,18,18-tetrakis (2-ethylhexyl)-5.14-dithiapentacyclo [10.6.0.0(3,10).0(4,8).01(3,17)]octadeca-1(12),2,4(8),6,10,13 (17),15-heptaen-6-yl)-8-thia-7.9-diazabicyclo [4.3.0]nona-1 (9),2,4,6-tetraen-2-yl]methylidene}-3-ethyl-2-thioxo-1,3-thiazolidin-4-one (EH-IDTBR) or (5Z, 5'Z)-5,5'-((7,7'-(4,4,9,9-tetraoctyl-4,9-dihydro-s-indaceno [1,2-b:5,6-b']dithiophene-2,7-diyl)bis (benzo [c][1,2,5]thiadiazole7,4diyl)) bis(methanylylidene))bis (3-ethyl-2-thioxothiazolidin-4-one) (O-IDTBR), into the host donor/acceptor active layers comprising of poly (3-hexythiophene-2,5-diyl) (P3HT) and [6,6]-phenyl-C71-butyric acid methylester (PC71BM). As a result, the 21.5% and 22.7% increase of the power conversion efficiency (PCE) for the two ternary systems were achieved, respectively, which was attributed to the enhanced light harvesting capability, optimized bulk-heterojunction morphology and the formation of cascade energy level alignments that could introduce an additional pathway for efficient charge transfer. Although both the short-circuit current density (Jsc) and fill factor (FF) values were increased significantly by regulating the weight ratios of non-fullerene acceptors of two ternary systems, the O-IDTBR-based ternary OSCs showed the higher Jsc while P3HT:EH-IDTBR:PC71BM system exhibited the higher FF values. The main difference of improved photovoltaic performance in the two ternary systems could be associated with the different blend morphology and charge carrier mobilities. In addition, nanomorphology studies suggested that lamellar stacking coherence lengths of P3HT in face-on orientation for EH-IDTBR- and O-IDTBR-based systems can be increased from 18.48 nm to 20.94 nm and 21.67 nm respectively, resulting from the stronger crystallinity of O-IDTBR than that of EH-IDTBR, which was beneficial for charge transport in the vertical direction. These results indicate that selecting the appropriate crystalline non-fullerene acceptors may be an effective strategy to optimize nanomorphology to further achieve high efficiency ternary OSCs.
引用
收藏
页码:643 / 652
页数:10
相关论文
共 50 条
  • [21] Aggregation of non-fullerene acceptors in organic solar cells
    Li, Donghui
    Zhang, Xue
    Liu, Dan
    Wang, Tao
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (31) : 15607 - 15619
  • [22] Organic solar cells based on non-fullerene acceptors
    Hou, Jianhui
    Inganas, Olle
    Friend, Richard H.
    Gao, Feng
    NATURE MATERIALS, 2018, 17 (02) : 119 - 128
  • [23] Isatin-derived non-fullerene acceptors for efficient organic solar cells
    Yousaf, Irfan
    Khera, Rasheed Ahmad
    Iqbal, Javed
    Gul, Sehrish
    Jabeen, Sobia
    Ihsan, Anaum
    Ayub, Khurshid
    MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2021, 121
  • [24] Star-Shaped Non-Fullerene Small Acceptors for Organic Solar Cells
    Pan, Yi-Qi
    Sun, Guang-Yan
    CHEMSUSCHEM, 2019, 12 (20) : 4570 - 4600
  • [25] Advances in Non-Fullerene Acceptor Based Ternary Organic Solar Cells
    Fu, Huiting
    Wang, Zhaohui
    Sun, Yanming
    SOLAR RRL, 2018, 2 (01):
  • [26] PTB7-Th/Non-fullerene acceptors for organic solar cells
    Khlaifia, Dalila
    Alimi, Kamel
    SYNTHETIC METALS, 2022, 291
  • [27] Effect of Non-fullerene Acceptors' Side Chains on the Morphology and Photovoltaic Performance of Organic Solar Cells
    Zhang, Cai'e
    Feng, Shiyu
    Liu, Yahui
    Hou, Ran
    Zhang, Zhe
    Xu, Xinjun
    Wu, Youzhi
    Bo, Zhishan
    ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (39) : 33906 - 33912
  • [28] Efficient Ternary Organic Solar Cells with Two Compatible Non-Fullerene Materials as One Alloyed Acceptor
    An, Qiaoshi
    Zhang, Jian
    Gao, Wei
    Qi, Feng
    Zhang, Miao
    Ma, Xiaoling
    Yang, Chuluo
    Huo, Lijun
    Zhang, Fujun
    SMALL, 2018, 14 (45)
  • [29] Recent progress in ternary organic solar cells based on solution-processed non-fullerene acceptors
    Zhou, Dan
    You, Wen
    Xu, Haitao
    Tong, Yongfen
    Hu, Bin
    Xie, Yu
    Chen, Lie
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (44) : 23096 - 23122
  • [30] Crystallinity dictates the selection of fullerene or non-fullerene acceptors in a small molecule organic solar cell
    Yu, Qingqing
    Xu, Jingjing
    Fu, Jiehao
    Xu, Tongle
    Yan, Xinhao
    Chen, Shanshan
    Chen, Haiyan
    Sun, Kuan
    Kan, Zhipeng
    Lu, Shirong
    Xiao, Zeyun
    DYES AND PIGMENTS, 2021, 187