Heteroatom Effect on Star-Shaped Hole-Transporting Materials for Perovskite Solar Cells

被引:64
作者
Garcia-Benito, Ines [1 ]
Zimmermann, Iwan [2 ,3 ]
Urieta-Mora, Javier [1 ,4 ]
Arago, Juan [5 ]
Calbo, Joaquin [5 ]
Perles, Josefina [6 ]
Serrano, Alvaro [1 ]
Molina-Ontoria, Agustin [4 ]
Orti, Enrique [5 ]
Martin, Nazario [1 ,4 ]
Nazeeruddin, Mohammad Khaja [2 ,3 ]
机构
[1] Univ Complutense Madrid, Dept Quim Organ, Fac CC Quim, Ave Complutense S-N, E-28040 Madrid, Spain
[2] EPFL, VALAIS, Grp Mol Engn Funct Mat, CH-1951 Sion, Switzerland
[3] EPFL, VALAIS, Lab Photon & Interfaces, CH-1951 Sion, Switzerland
[4] IMDEA Nanociencia, C Faraday 9,Ciudad Univ Cantoblanco, Madrid 28049, Spain
[5] Univ Valencia, Inst Ciencia Mol, Catedrat Jose Beltran 2, Paterna 46980, Spain
[6] Univ Autonoma Madrid, Lab Difracc Rayos Monocristal X, Serv Interdept Invest, Campus Cantoblanco, E-28049 Madrid, Spain
基金
欧盟地平线“2020”; 欧洲研究理事会;
关键词
benzotriselenophene; heteroatom effect; hole transporting materials; perovskite; solar cells; PHOTOVOLTAIC CELLS; EFFICIENT; STABILITY; LENGTHS; PERFORMANCE; CH3NH3PBI3; CONDUCTOR; IODIDE;
D O I
10.1002/adfm.201801734
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Three new star-shaped hole-transporting materials (HTMs) incorporating benzotripyrrole, benzotrifuran, and benzotriselenophene central cores endowed with three-armed triphenylamine moieties (BTP-1, BTF-1, and BTSe-1, respectively) are designed, synthesized, and implemented in perovskite solar cells (PSCs). The impact that the heteroatom-containing central scaffold has on the electrochemical and photophysical properties, as well as on the photovoltaic performance, is systematically investigated and compared with their sulfur-rich analogue (BTT-3). The new HTMs exhibit suitable highest-occupied molecular orbitals (HOMO) levels regarding the valence band of the perovskite, which ensure efficient hole extraction at the perovskite/HTM interface. The molecular structures of BTF-1, BTT-3, and BTSe-1 are fully elucidated by single-crystal X-ray crystallography as toluene solvates. The optimized (FAPbI(3))(0.85)(MAPbBr(3))(0.15)-based perovskite solar cells employing the tailor-made, chalcogenide-based HTMs exhibit remarkable power conversion efficiencies up to 18.5%, which are comparable to the devices based on the benchmark spiro-OMeTAD. PSCs with BTP-1 exhibit a more limited power conversion efficiency of 15.5%, with noticeable hysteresis. This systematic study indicates that chalcogenide-based derivatives are promising HTM candidates to compete efficiently with spiro-OMeTAD.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Bifunctional spiro-fluorene/heterocycle cored hole-transporting materials: Role of the heteroatom on the photovoltaic performance of perovskite solar cells
    Xu, Bo
    Zhu, Hongwei
    Bao, Huayu
    Cao, Xiaohui
    Dong, Ying
    Zhang, Yuecheng
    Yin, Guohui
    Li, Xianggao
    Wang, Shirong
    [J]. CHEMICAL ENGINEERING JOURNAL, 2022, 431
  • [22] Hole-Transporting Materials for Perovskite-Sensitized Solar Cells
    Dhingra, Pankul
    Singh, Pallavi
    Rana, Prem Jyoti Singh
    Garg, Akshat
    Kar, Prasenjit
    [J]. ENERGY TECHNOLOGY, 2016, 4 (08) : 891 - 938
  • [23] Hole-Transporting Materials in Inverted Planar Perovskite Solar Cells
    Yan, Weibo
    Ye, Senyun
    Li, Yunlong
    Sun, Weihai
    Rao, Haixia
    Liu, Zhiwei
    Bian, Zuqiang
    Huang, Chunhui
    [J]. ADVANCED ENERGY MATERIALS, 2016, 6 (17)
  • [24] Development of simple hole-transporting materials for perovskite solar cells
    Namespetra, Andrew M.
    Hendsbee, Arthur D.
    Welch, Gregory C.
    Hill, Ian G.
    [J]. CANADIAN JOURNAL OF CHEMISTRY, 2016, 94 (04) : 352 - 359
  • [25] Effect of fluorine substitution on properties of hole-transporting materials for perovskite solar cells
    Yang, Jixin
    Hu, Weixia
    Jian, Yi
    Zhao, Jie
    Xu, Lingfei
    [J]. DYES AND PIGMENTS, 2022, 204
  • [26] Molecular Engineering of Polymeric Hole-Transporting Materials for Efficient and Stable Perovskite Solar Cells
    Li, Yan
    Duan, Shichun
    Zhang, Luozheng
    Zhang, Yong
    Tang, Zikang
    Xu, Baomin
    [J]. ACS APPLIED ENERGY MATERIALS, 2021, 4 (04) : 3526 - 3534
  • [27] Ionization of hole-transporting materials as a method for improving the photovoltaic performance of perovskite solar cells
    Tingare, Yogesh S.
    Lin, Chien-Hsiang
    Su, Chaochin
    Chou, Sheng-Chin
    Hsu, Ya-Chun
    Ghosh, Dibyajyoti
    Lai, Ning-Wei
    Lew, Xin-Rui
    Tretiak, Sergei
    Tsai, Hsinhan
    Nie, Wanyi
    Li, Wen-Ren
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2024, 12 (04) : 2140 - 2150
  • [28] Star-Shaped Molecules as Dopant-Free Hole Transporting Materials for Efficient Perovskite Solar Cells: Multiscale Simulation
    Zhang, Yue
    Heng, Panpan
    Su, Huishuang
    Li, Junfeng
    Guo, Jia
    Ning, Pan
    Wu, Wenpeng
    Ren, Tiegang
    Wang, Li
    Zhang, Jinglai
    [J]. CHEMICAL RECORD, 2019, 19 (05) : 938 - 946
  • [29] Molecular Engineering of Enamine-Based Hole-Transporting Materials for High-Performing Perovskite Solar Cells: Influence of the Central Heteroatom
    Vaitukaityte, Deimante
    Minh Anh Truong
    Rakstys, Kasparas
    Murdey, Richard
    Funasaki, Tsukasa
    Yamada, Takumi
    Kanemitsu, Yoshihiko
    Jankauskas, Vygintas
    Getautis, Vytautas
    Wakamiya, Atsushi
    [J]. SOLAR RRL, 2022, 6 (11)
  • [30] New advances in small molecule hole-transporting materials for perovskite solar cells
    Wang, Ya-Kun
    Jiang, Zuo-Quan
    Liao, Liang-Sheng
    [J]. CHINESE CHEMICAL LETTERS, 2016, 27 (08) : 1293 - 1303