Small molecule interfacial cross-linker for highly efficient two-dimensional perovskite solar cells

被引:2
|
作者
Hongming Hou [1 ]
Taotao Hu [1 ]
Fu Zhang [1 ]
Rui Liu [1 ]
Jialong He [1 ]
Chang Liu [1 ]
Yue Yu [1 ]
Dong Chen [1 ]
Qiaofeng Wu [1 ]
Meng Zhang [1 ]
Hua Yu [1 ]
机构
[1] Institute of Photovoltaics, Southwest Petroleum University
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中图分类号
TM914.4 [太阳能电池];
学科分类号
摘要
The nonradiative recombination of charge carriers at the hole transport layer(HTL)/perovskite interface generally induces remarkable performance loss of the inverted two-dimensional perovskite solar cells(2D PSCs). Herein, a cross-linkable small molecule of 2-mercaptoimidazole(2-MI) was introduced into the nickel oxide(NiO)/2D perovskite interface. Experiments have confirmed the formation of Ni-N covalent bond by N atom in the 2-MI and Ni in the NiOand the coordinating between S atom of 2-MI and under-coordinated Pbnear to the NiO/perovskite interface, which contributes to creating a crosslinking between NiO/perovskite interface to restrain charge carrier recombination and enhance the extraction of hole carriers at the interface. Besides, the 2-MI modification layer is also beneficial for promoting the crystallinity of 2D perovskite. Consequently, the inverted 2D PSCs with 2-MI modification achieved the best power conversion efficiency of 15%. This paves a route to acquire highly efficient 2D PSCs by constructing a cross-linking at the NiOHTL/2D perovskite interface.
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页码:35 / 41
页数:7
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