Printable Highly Conductive Conjugated Polymer Sensitized ZnO NCs as Cathode Interfacial Layer for Efficient Polymer Solar Cells

被引:47
|
作者
Liu, Jian [1 ]
Wu, Jiang [1 ]
Shao, Shuyan [2 ]
Deng, Yunfeng [1 ,3 ]
Meng, Bin [1 ,3 ]
Xie, Zhiyuan [1 ]
Geng, Yanhou [1 ]
Wang, Lixiang [1 ]
Zhang, Fengling [2 ]
机构
[1] Chinese Acad Sci, State Key Lab Polymer Phys & Chem, Changchun Inst Appl Chem, Changchun 130022, Peoples R China
[2] Linkoping Univ, Dept Phys Chem & Biol, S-58183 Linkoping, Sweden
[3] Univ Chinese Acad Sci, Beijing 100039, Peoples R China
基金
中国国家自然科学基金;
关键词
polymer solar cells; cathode interfacial layer; ZnO nanocrystal; conductivity; sensitizer; PHOTOVOLTAIC CELLS; PHOSPHONATE GROUPS; FILL FACTOR; PERFORMANCE; OXIDE; TRANSPORT; POLYFLUORENE; TEMPERATURE; FABRICATION;
D O I
10.1021/am501001v
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We report a facile way to produce printable highly conductive cathode interfacial layer (CIL) for efficient polymer solar cells (PSCs) by sensitizing ZnO nanocrystals (NCs) with a blue fluorescent conjugated polymer, poly(9, 9-bis-(6'-diethoxylphosphorylhexyl) fluorene) (PFEP). Herein, PFEP plays dual distinctive roles in the composite. Firstly, PFEP chains can effectively block the aggregation of ZnO NCs, leading to uniform and smooth film during solution processing via assembly on ZnO NC surfaces through their pending phosphonate groups. Secondly, PFEP can greatly improve the conductivity of ZnO NCs by charge transfer doping, that is the charge transfer from the sensitizer driven by electron-chemical potential equilibrium, which could be even more pronounced under light illumination because of light excitation of PFEP sensitizer. The increased conductivity in ZnO-PFEP layer renders more efficient electron transport and extraction compared to pristine ZnO layer. This ZnO-PFEP CIL was successfully applied to PSCs based on three polymer donor systems with different band-gaps, and efficiency enhancements from 44 to 70% were observed compared to those PSCs with pristine ZnO CIL. The highest efficiency of 7.56% was achieved in P(IID-DTC):PC70BM-based PSCs by using ZnO-PFEP film as CIL. Moreover, the enhanced conductivity due to the charge-transfer doping effect allows thick ZnO-PFEP film to be used as CIL in high-performance PSCs. Both the high conductivity and good film-forming properties of ZnO-PFEP CIL are favorable for large-scale printable PSCs, which is also verified by high-efficiency PSCs with ZnO-PFEP CIL fabricated using doctor-blading, a large-scale processing technique. The work provides an efficient printable cathode interfacial material for efficient PSCs.
引用
收藏
页码:8237 / 8245
页数:9
相关论文
共 50 条
  • [1] Highly efficient polymer solar cells employing natural chlorophyllin as a cathode interfacial layer
    Guan, Qian
    Peng, Ruixiang
    Liu, Zhiyang
    Song, Wei
    Yang, Rongjuan
    Hong, Ling
    Lei, Tao
    Fan, Xi
    Wei, Qiang
    Ge, Ziyi
    JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (02) : 464 - 468
  • [2] Alcohol-soluble conjugated oligomers as the cathode interfacial layer in polymer solar cells
    Kim, Youn Hwan
    Marsya, Mutia Anissa
    Sylvianti, Nadhila
    Kim, Dong Geun
    Choi, Hee Lack
    Park, Chan Young
    Lee, Gun Dae
    Kim, Joo Hyun
    MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 2018, 660 (01) : 60 - 65
  • [3] Photoconductive Cathode Inter layer for Highly Efficient Inverted Polymer Solar Cells
    Nian, Li
    Zhang, Wenqiang
    Zhu, Na
    Liu, Linlin
    Xie, Zengqi
    Wu, Hongbin
    Wuerthner, Frank
    Ma, Yuguang
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2015, 137 (22) : 6995 - 6998
  • [4] Intramolecular Lock Conjugated Polymer Electrolytes as the Cathode Interfacial Layer for Nonfullerene Organic Solar Cells
    Quan, Jianwei
    Zhou, Dan
    Wan, Wentian
    Wang, Fang
    Hu, Lin
    Hu, Bin
    Tong, Yongfen
    Wang, Jianru
    Lv, Ruizhi
    Li, Zaifang
    Wu, Feiyan
    Chen, Lie
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2024, 12 (09) : 3851 - 3862
  • [5] Organosilica Nanodots Doped ZnO Cathode Interface Layer for Highly Efficient and Stable Inverted Polymer Solar Cells
    Huang, Luchan
    Chen, Zhuangzhuang
    Chen, Wenwen
    Rong, Qikun
    Li, Na
    Nian, Li
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (49) : 68569 - 68578
  • [6] Efficient polymer bulk heterojunction solar cells with cesium acetate as the cathode interfacial layer
    Jia, Yuehua
    Yang, Liying
    Qin, Wenjing
    Yin, Shougen
    Zhang, Fengling
    Wei, Jun
    RENEWABLE ENERGY, 2013, 50 : 565 - 569
  • [7] Interfacial engineering for highly efficient polymer solar cells
    Ge, Ziyi
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 252
  • [8] Organophosphorus Derivatives as Cathode Interfacial-Layer Materials for Highly Efficient Fullerene-Free Polymer Solar Cells
    Gupta, Monika
    Yan, Dong
    Yao, Jiannian
    Zhan, Chuanlang
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (42) : 35896 - 35903
  • [9] Conjugated Polyelectrolyte Hybridized ZnO Nanoparticles as a Cathode Interfacial Layer for Efficient Polymer Light-Emitting Diodes
    Kim, Kyungmok
    Suh, Minwon
    Choi, Jihae
    Lee, Dongchan
    Kim, Youngsun
    Cheong, Sang Hun
    Kim, Donghyuk
    Jeon, Duk Young
    ADVANCED FUNCTIONAL MATERIALS, 2015, 25 (48) : 7450 - 7456
  • [10] Highly crystalline bilayer electron transport layer for efficient conjugated polymer solar cells
    Xu, Cheng
    Wright, Matthew
    Elumalai, Naveen Kumar
    Mahmud, Md Arafat
    Wang, Dian
    Upama, Mushfika Baishakhi
    Haque, Faiazul
    Uddin, Ashraf
    CURRENT APPLIED PHYSICS, 2018, 18 (05) : 505 - 511