Minimizing the buried interfacial energy loss using a fluorine-substituted small molecule for 25.92%-efficiency and stable inverted perovskite solar cells

被引:35
作者
Chen, Xin [1 ]
Wang, Qi [1 ]
Wei, Hui [2 ]
Yang, Jiewei [1 ]
Yao, Yuqi [1 ]
Tang, Weijian [3 ]
Qiu, Wuke [1 ]
Xu, Xiaopeng [1 ]
Song, Lin [2 ]
Wu, Yihui [1 ]
Peng, Qiang [1 ]
机构
[1] Sichuan Univ, Engn Res Ctr Alternat Energy Mat & Devices, Minist Educ, Sch Chem Engn,State Key Lab Polymer Mat Engn, Chengdu 610065, Peoples R China
[2] Northwestern Polytech Univ, Inst Flexible Elect IFE, Frontiers Sci Ctr Flexible Elect FSCFE, Xian 710072, Peoples R China
[3] Sichuan Univ, Coll Mat Sci & Engn, Chengdu 610065, Peoples R China
基金
中国国家自然科学基金;
关键词
Charge transfer - Coordination reactions - Gallium compounds - Gluing - Hydrogen bonds - Spectroscopic analysis;
D O I
10.1039/d4ee02964j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Achieving optimal interfacial contact and band alignment at the buried interface of perovskites is crucial for minimizing the energy loss in perovskite solar cells (PSCs). Herein, a series of fluorine-substituted succinic acid derivatives are rationally introduced into the bottom interface of a perovskite. Tetrafluorosuccinic acid (TFSA), with its symmetric molecular structure and strong electronegativity, has been proven to be the best interfacial regulator among the selected functional molecules. TFSA not only effectively stabilizes FA cations via multi-site hydrogen-bonding, but also passivates under-coordinated Pb2+ defects through coordination effects. Moreover, TFSA finely regulates the morphological arrangement and homogenizes the surface contact potential of MeO-2PACz, resulting in the formation of high-quality perovskite films with reduced interfacial charge transport barriers and suppressed non-radiative recombination. Consequently, an exceptional efficiency of 25.92% (certified 25.77%) was achieved for a 0.09 cm2 inverted device, along with a voltage loss of 0.36 V and excellent long-term operational stability, representing the highest value reported for inverted PSCs based on RbCsFAMA-based perovskites to date. Additionally, a 12.96 cm2 (active area) minimodule delivers an impressive efficiency of 22.78%, demonstrating great upscaling potential. This study opens an effective strategy to rationally regulate the buried interfacial energy loss towards highly efficient and stable inverted PSCs. Tetrafluorosuccinic acid was introduced into the buried interface to stabilize FA cations, mediate crystal growth of perovskite and reduce the hole-transport barrier, delivering a record efficiency of 25.92% for RbCsFAMA-based perovskite solar cells.
引用
收藏
页码:7342 / 7354
页数:13
相关论文
共 59 条
[41]   Tailored Succinic Acid-Derived Molecular Structures toward 25.41%-Efficiency and Stable Perovskite Solar Cells [J].
Wang, Qi ;
Chen, Yuting ;
Chen, Xin ;
Tang, Weijian ;
Qiu, Wuke ;
Xu, Xiaopeng ;
Wu, Yihui ;
Peng, Qiang .
ADVANCED MATERIALS, 2024, 36 (06)
[42]   In Situ Self-Elimination of Defects via Controlled Perovskite Crystallization Dynamics for High-Performance Solar Cells [J].
Wang, Shiqiang ;
Yang, Tinghuan ;
Yang, Yingguo ;
Du, Yachao ;
Huang, Wenliang ;
Cheng, Liwei ;
Li, Haojin ;
Wang, Peijun ;
Wang, Yajie ;
Zhang, Yi ;
Ma, Chuang ;
Liu, Pengchi ;
Zhao, Guangtao ;
Ding, Zicheng ;
Liu, Shengzhong ;
Zhao, Kui .
ADVANCED MATERIALS, 2023, 35 (42)
[43]   Intrinsic Dipole Arrangement to Coordinate Energy Levels for Efficient and Stable Perovskite Solar Cells [J].
Wu, Yutong ;
Chang, Bohong ;
Wang, Lian ;
Li, Hui ;
Pan, Lu ;
Liu, Zhen ;
Yin, Longwei .
ADVANCED MATERIALS, 2023, 35 (18)
[44]   A Deformable Additive on Defects Passivation and Phase Segregation Inhibition Enables the Efficiency of Inverted Perovskite Solar Cells over 24% [J].
Xie, Lisha ;
Liu, Jian ;
Li, Jun ;
Liu, Chang ;
Pu, Zhenwei ;
Xu, Peng ;
Wang, Yaohua ;
Meng, Yuanyuan ;
Yang, Mengjin ;
Ge, Ziyi .
ADVANCED MATERIALS, 2023, 35 (38)
[45]   Direct Observation on p- to n-Type Transformation of Perovskite Surface Region during Defect Passivation Driving High Photovoltaic Efficiency [J].
Xiong, Shaobing ;
Hou, Zhangyu ;
Zou, Shijie ;
Lu, Xiaoshuang ;
Yang, Jianming ;
Hao, Tianyu ;
Zhou, Zihao ;
Xu, Jianhua ;
Zeng, Yihan ;
Xiao, Wei ;
Dong, Wei ;
Li, Danqin ;
Wang, Xiang ;
Hu, Zhigao ;
Sun, Lin ;
Wu, Yuning ;
Liu, Xianjie ;
Ding, Liming ;
Sun, Zhenrong ;
Fahlman, Mats ;
Bao, Qinye .
JOULE, 2021, 5 (02) :467-480
[46]   Pushing the Limit of Open-Circuit Voltage Deficit via Modifying Buried Interface in CsPbI3 Perovskite Solar Cells [J].
Xu, Chenzhe ;
Zhang, Suicai ;
Fan, Wenqiang ;
Cheng, Feiyu ;
Sun, Haochun ;
Kang, Zhuo ;
Zhang, Yue .
ADVANCED MATERIALS, 2023, 35 (07)
[47]   Optimizing the Buried Interface in Flexible Perovskite Solar Cells to Achieve Over 24% Efficiency and Long-Term Stability [J].
Xu, Ruoyao ;
Pan, Fang ;
Chen, Jinyu ;
Li, Jingrui ;
Yang, Yingguo ;
Sun, Yulu ;
Zhu, Xinyi ;
Li, Peizhou ;
Cao, Xiangrong ;
Xi, Jun ;
Xu, Jie ;
Yuan, Fang ;
Dai, Jinfei ;
Zuo, Chuantian ;
Ding, Liming ;
Dong, Hua ;
Jen, Alex K. -Y. ;
Wu, Zhaoxin .
ADVANCED MATERIALS, 2024, 36 (07)
[48]   Surface optimization to eliminate hysteresis for record efficiency planar perovskite solar cells [J].
Yang, Dong ;
Zhou, Xin ;
Yang, Ruixia ;
Yang, Zhou ;
Yu, Wei ;
Wang, Xiuli ;
Li, Can ;
Liu, Shengzhong ;
Chang, Robert P. H. .
ENERGY & ENVIRONMENTAL SCIENCE, 2016, 9 (10) :3071-3078
[49]   Amidino-based Dion-Jacobson 2D perovskite for efficient and stable 2D/3D heterostructure perovskite solar cells [J].
Yang, Tinghuan ;
Ma, Chuang ;
Cai, Weilun ;
Wang, Shiqiang ;
Wu, Yin ;
Feng, Jiangshan ;
Wu, Nan ;
Li, Haojin ;
Huang, Wenliang ;
Ding, Zicheng ;
Gao, Lili ;
Liu, Shengzhong ;
Zhao, Kui .
JOULE, 2023, 7 (03) :574-586
[50]   One-stone-for-two-birds strategy to attain beyond 25% perovskite solar cells [J].
Yang, Tinghuan ;
Gao, Lili ;
Lu, Jing ;
Ma, Chuang ;
Du, Yachao ;
Wang, Peijun ;
Ding, Zicheng ;
Wang, Shiqiang ;
Xu, Peng ;
Liu, Dongle ;
Li, Haojin ;
Chang, Xiaoming ;
Fang, Junjie ;
Tian, Wenming ;
Yang, Yingguo ;
Liu, Shengzhong ;
Zhao, Kui .
NATURE COMMUNICATIONS, 2023, 14 (01)