Air-processed, large grain perovskite films with low trap density from perovskite crystal engineering for high-performance perovskite solar cells with improved ambient stability

被引:31
|
作者
Ding, Manman [1 ]
Sun, Leijie [1 ]
Chen, Xiayan [1 ]
Luo, Tianyuan [1 ]
Ye, Tian [1 ]
Zhao, Chunyan [2 ]
Zhang, Wenfeng [1 ]
Chang, Haixin [1 ]
机构
[1] Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Hubei, Peoples R China
[2] Shanxi Univ Sci & Technol, Shanxi Key Lab Chem Addit Ind, Xian 710021, Shaanxi, Peoples R China
关键词
EFFICIENCY; GROWTH; PHOTODETECTORS; HYSTERESIS; MIGRATION; ROUTE; LAYER;
D O I
10.1007/s10853-019-03768-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
High-performance perovskite solar cell processed in ambient air is a big challenge due to the sensitivity of perovskite films to air. Many defects are generated easily at grain boundaries and in the perovskite films by conventional molecular/ion precursor solution mixing methods (i.e., solution mixing-based method), which restrict its stability in air and photovoltaic performance with most power conversion efficiency less than 15%. In this work, we develop a facile method for air-processed, highly crystalline, quasi-3D perovskite film with large grain size (over 6.6 times bigger than that from control conventional method) and improved ambient air stability by phenylethylammonium (PEA)-doped MA(1-x)PEA(x)PbI(3) perovskite crystal engineering. Furthermore, benefiting from PEA(+) doping and crystal engineering, the trap density decreases 50% compared with control. Consequently, with the optimal concentration of PEA doping, the power conversion efficiency increases from 15.6% for conventional solution mixing-based perovskite solar cells to 17.6% for crystal engineering-based ones with significantly improved moisture stability. The perovskite crystal engineering-based solar cells without any encapsulation retain 75% of the initial performance after 30-day storage in ambient air under a relative humidity of 50 +/- 10%, and two times faster degradation rate is observed for control, conventional solution mixing-based perovskite solar cells when compared with crystal engineering-based ones.
引用
收藏
页码:12000 / 12011
页数:12
相关论文
共 50 条
  • [41] Passivation and process engineering approaches of halide perovskite films for high efficiency and stability perovskite solar cells
    Mohd Yusoff, Abd. Rashid bin
    Vasilopoulou, Maria
    Georgiadou, Dimitra G.
    Palilis, Leonidas C.
    Abate, Antonio
    Nazeeruddin, Mohammad Khaja
    ENERGY & ENVIRONMENTAL SCIENCE, 2021, 14 (05) : 2906 - 2953
  • [42] Efficient planar perovskite solar cells based on high-quality perovskite films with smooth surface and large crystal grains fabricated in ambient air conditions
    Zhang, Lei
    Zhang, Xuezhen
    Yu, Yang
    Xu, Xiaoxia
    Tang, Jie
    He, Xin
    Wu, Jihuai
    Lan, Zhang
    SOLAR ENERGY, 2017, 155 : 942 - 950
  • [43] Air-Processed Perovskite Solar Cells with >25% Efficiency and High Stability Enabled by Crystallization Modulation and Holistic Passivation
    Shi, Xiaoyu
    Liu, Tianxiao
    Dou, Yunjie
    Hu, Xiaodong
    Liu, Yangyang
    Wang, Feifei
    Wang, Lingyuan
    Ren, Zhijun
    Chen, Shangshang
    ADVANCED MATERIALS, 2024, 36 (31)
  • [44] Ambient scalable fabrication of high-performance flexible perovskite solar cells
    Liu, Pengchi
    Wang, Hui
    Niu, Tianqi
    Yin, Lei
    Du, Yachao
    Lang, Lei
    Zhang, Zheng
    Tu, Yongchao
    Liu, Xiujie
    Chen, Xin
    Wang, Shuang
    Wu, Nan
    Qin, Ru
    Wang, Likun
    Yang, Shaoan
    Zhang, Chunfu
    Pan, Xu
    Liu, Shengzhong
    Zhao, Kui
    ENERGY & ENVIRONMENTAL SCIENCE, 2024, 17 (19) : 7069 - 7080
  • [45] Solvent engineering based on triethylenetetramine (TETA) for perovskite solar cells processed in ambient-air
    Timasi, N.
    Tafazoli, S.
    Nouri, E.
    Mohammadi, M. R.
    Li, Y.
    PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES, 2019, 18 (05) : 1228 - 1234
  • [46] Solvent engineering based on triethylenetetramine (TETA) for perovskite solar cells processed in ambient-air
    N. Timasi
    S. Tafazoli
    E. Nouri
    M. R. Mohammadi
    Y. Li
    Photochemical & Photobiological Sciences, 2019, 18 : 1228 - 1234
  • [47] Binary synergetic ions reduce defect density in ambient air processed perovskite solar cells
    Liu, Hongyu
    Zhang, Peng
    Wang, Fei
    Jia, Chong
    Chen, Yiqing
    SOLAR ENERGY, 2020, 198 : 335 - 342
  • [48] Preparation of low-cost perovskite solar cells with high-quality perovskite films in an ambient atmosphere
    Ou, Dingwei
    Liu, Yifeng
    Chen, Qianqiao
    Zhong, Qin
    NANOTECHNOLOGY, 2022, 33 (01)
  • [49] Deep and shallow level defect passivation via fluoromethyl phosphonate for high performance air-processed perovskite solar cells
    Liu, Congcong
    Su, Haijun
    Pu, Yu
    Guo, Min
    Zhai, Peng
    Liu, Zhike
    Zhang, Zhuo
    NANO ENERGY, 2023, 118
  • [50] Carboxyl functional group-assisted defects passivation strategy for efficient air-processed perovskite solar cells with excellent ambient stability
    Deng, Yaxin
    Li, Xin
    Wang, Rui
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2021, 230