Multifunctional interfacial molecular bridge enabled by an aggregation-induced emission strategy for enhancing efficiency and UV stability of perovskite solar cells

被引:0
|
作者
Shuhang Bian [1 ]
Yuqi Wang [1 ]
Fancong Zeng [1 ]
Zhongqi Liu [1 ]
Bin Liu [1 ]
Yanjie Wu [1 ]
Long Shao [1 ]
Yongzhi Shao [1 ]
Huan Zhang [1 ]
Shuainan Liu [1 ]
Jin Liang [1 ]
Xue Bai [1 ]
Lin Xu [1 ]
Donglei Zhou [1 ]
Biao Dong [1 ]
Hongwei Song [1 ,2 ]
机构
[1] State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University
[2] College of Science, Shanghai University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TM914.4 [太阳能电池];
学科分类号
080502 ;
摘要
The interface defects between the electron transport layer(ETL) and the perovskite layer,as well as the low ultraviolet(UV) light utilization rate of the perovskite absorption layer,pose significant challenges for the commercialization of perovskite solar cells(PSCs).To address this issue,this paper proposes an innovative multifunctional interface modulation strategy by introducing aggregation-induced emission(AIE) molecule 5-[4-[1,2,2-tri[4-(3,5-dicarboxyphenyl)phenyl]ethylene] phenyl]benzene-1,3-dicarboxylic acid(H8ETTB) at the SnO2ETL/perovskite interface.Firstly,the interaction of H8ETTB with the SnO2surface,facilitated by its carboxyl groups,is effective in passivating surface defects caused by noncoord inated Sn and O vacancies.This interaction enhances the conductivity of the SnO2film and adjusts energy levels,leading to enhanced charge carrier transport.Simultaneously,H8ETTB can passivate noncoord inated Pb2+ions at the perovskite interface,promoting perovskite crystallization and reducing the interface energy barrier,resulting in a perovskite film with low defects and high crystalline quality.More importantly,the H8ETTB molecule,can convert UV light into light absorbable by the perovskite,thereby reducing damage caused by UV light and improving the device’s utilization of UV.Consequently,the champion PSC based on SnO2-H8ETTB achieves an impressing efficiency of 23.32%and significantly improved photostability compared with the control device after continuous exposure to intense UV radiation.In addition,the Cs0.05(FA0.95MA0.05)0.95Pb(I0.95Br0.05)3based device can achieve maximum efficiency of 24.01%,demonstrating the effectiveness and universality of this strategy.Overall,this innovative interface bridging strategy effectively tackles interface defects and low UV light utilization in PSCs,presenting a promising approach for achieving highly efficient and stable PSCs.
引用
收藏
页码:588 / 595
页数:8
相关论文
共 50 条
  • [1] Multifunctional interfacial molecular bridge enabled by an aggregation-induced emission strategy for enhancing efficiency and UV stability of perovskite solar cells
    Bian, Shuhang
    Wang, Yuqi
    Zeng, Fancong
    Liu, Zhongqi
    Liu, Bin
    Wu, Yanjie
    Shao, Long
    Shao, Yongzhi
    Zhang, Huan
    Liu, Shuainan
    Liang, Jin
    Bai, Xue
    Xu, Lin
    Zhou, Donglei
    Dong, Biao
    Song, Hongwei
    JOURNAL OF ENERGY CHEMISTRY, 2024, 95 : 588 - 595
  • [2] Aggregation-induced Emission Materials for High-efficiency Perovskite Solar Cells
    Gu, Ningxia
    Sun, Zeyuan
    Song, Lixin
    Du, Pingfan
    Xiong, Jie
    CHEMPHYSCHEM, 2023, 24 (14)
  • [3] Choline Derivative as a Multifunctional Interfacial Bridge through Synergistic Effects for Improving the Efficiency and Stability of Perovskite Solar Cells
    Meng, Xiangxin
    Sun, Qing
    Shen, Bo
    Hu, Die
    Kang, Bonan
    Silva, S. Ravi P.
    Wang, Lijun
    SMALL, 2024, 20 (25)
  • [4] Building a UV filter and interfacial bridge with a multifunctional molecule for enhancing the performance and stability of MAPbI3 solar cells
    Zhao, Chenyu
    Li, Yutao
    Yang, Xinxuan
    Fan, Lin
    Wei, Maobin
    Liu, Huilian
    Liu, Xiaoyan
    Yang, Jinghai
    Wang, Fengyou
    Yang, Lili
    JOURNAL OF MATERIALS CHEMISTRY C, 2023, 11 (41) : 14167 - 14176
  • [5] Heterocyclic amino acid molecule as a multifunctional interfacial bridge for improving the efficiency and stability of quadruple cation perovskite solar cells
    Chen, Yuting
    Wang, Qi
    Tang, Weijian
    Qiu, Wuke
    Wu, Yihui
    Peng, Qiang
    NANO ENERGY, 2023, 107
  • [6] Multifunctional acetoacetanilide additive strategy for enhanced efficiency and stability in perovskite solar cells
    Newaz, Abdullah Al Hossain
    Kumar, Anjan
    Kanjariya, Prakash
    Rajiv, Asha
    Shankhyan, Aman
    Albert, Helen Merina
    Mohsen, Ahmed
    Atif, M.
    El-Meligy, Mohammed
    RSC ADVANCES, 2025, 15 (09) : 6678 - 6687
  • [7] Natural Product Additive with Multifunctional Groups Enhancing the Efficiency and Stability of Perovskite Solar Cells
    Han, Yonglei
    Zhou, Chao
    Weng, Shuchen
    Yu, Guicheng
    Lin, Fang
    Hu, Hanlin
    Wang, Yongfei
    Lin, Haoran
    SOLAR RRL, 2023, 7 (04)
  • [8] Multifunctional molecular incorporation boosting the efficiency and stability of the inverted perovskite solar cells
    Wang, Zhiwen
    Tao, Junlei
    Shen, Jinliang
    Kong, Weiguang
    Yu, Zhaohui
    Wang, Anyi
    Fu, Guangsheng
    Yang, Shaopeng
    JOURNAL OF POWER SOURCES, 2021, 488
  • [9] Interfacial engineering of sputtered NiOx for enhancing efficiency and stability of inverted perovskite solar cells
    Zhang, Wei
    Shen, Honglie
    Yan, Pingyuan
    Zhang, Jingzhe
    SOLAR ENERGY, 2022, 248 : 128 - 136
  • [10] Interfacial Distribution Effects of Potassium Fluoride on Enhancing Performance and UV Stability of Perovskite Solar Cells
    Wang, Hui
    Wang, Likun
    Niu, Tianqi
    Shang, Wenli
    Zhang, Xiaochun
    Wan, Zhenghui
    Chen, Xin
    Zhu, Weidong
    Wang, Kai
    Liu, Shengzhong Frank
    Zhang, Chunfu
    ACS APPLIED ENERGY MATERIALS, 2024, 7 (18): : 8163 - 8172