Self-assembled hole-selective contact for efficient Sn-Pb perovskite solar cells and all-perovskite tandems

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作者
Jingwei Zhu [1 ]
Xiaozhen Huang [2 ]
Yi Luo [1 ]
Wenbo Jiao [1 ]
Yuliang Xu [1 ]
Juncheng Wang [1 ]
Zhiyu Gao [1 ]
Kun Wei [3 ]
Tianshu Ma [4 ]
Jiayu You [5 ]
Jialun Jin [1 ]
Shenghan Wu [1 ]
Zhihao Zhang [1 ]
Wenqing Liang [1 ]
Yang Wang [1 ]
Shengqiang Ren [2 ]
Changlei Wang [6 ]
Cong Chen [1 ]
Jinbao Zhang [4 ]
Dewei Zhao [5 ]
机构
[1] Sichuan University,College of Materials Science and Engineering & Engineering Research Center of Alternative Energy Materials & Devices, Ministry of Education
[2] Fujian Normal University and Strait Laboratory of Flexible Electronics (SLoFE),Strait Institute of Flexible Electronics (SIFE, Future Technologies)
[3] Xiamen University,College of Materials
[4] Soochow University,School of Optoelectronic Science and Engineering
[5] Soochow University,Key Lab of Modern Optical Technologies of Education Ministry of China
[6] Chinese Academy of Sciences,State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter
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D O I
10.1038/s41467-024-55492-4
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摘要
Self-assembled monolayers (SAMs) have displayed unpredictable potential in efficient perovskite solar cells (PSCs). Yet most of SAMs are largely suitable for pure Pb-based devices, precisely developing promising hole-selective contacts (HSCs) for Sn-based PSCs and exploring the underlying general mechanism are fundamentally desired. Here, based on the prototypical donor-acceptor SAM MPA-BT-BA (BT), oligoether side chains with different length (i.e., methoxy, 2-methoxyethoxy, 2-(2-methoxyethoxy)ethoxy group) were custom-introduced on the benzothiadiazole unit to produce the target SAMs with acronyms MPA-MBT-BA (MBT), MPA-EBT-BA (EBT), and MPA-MEBT-BA (MEBT), respectively, and acting as HSCs for efficient Sn-Pb PSCs and all-perovskite tandems. The introduction of oligoether side chains enables HSCs effectively accelerate hole extraction, regulate the crystal growth and passivate surface defects of Sn-Pb perovskites. In particular, benefiting from the enhanced Sn-Pb perovskite film quality and the suppressed interfacial non-radiative recombination losses, EBT-tailored LBG devices yield a champion efficiency of 23.54%, enabling 28.61% efficient monolithic all-perovskite tandems with an impressive VOC of 2.155 V and excellent operational stability as well as 28.22%-efficiency 4-T tandems.
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