Inkjet-printed Ce-doped SnOx electron transport layer for improved performance of planar perovskite solar cells

被引:2
|
作者
Lu, Dongli [1 ]
Jamshidi, Mahboubeh [2 ]
Dun, Chaochao [3 ]
Urban, Jeffrey J. [3 ]
Gardner, James M. [2 ]
Belova, Liubov [1 ]
机构
[1] KTH Royal Inst Technol, Dept Mat Sci & Engn, S-10044 Stockholm, Sweden
[2] KTH Royal Inst Technol, Dept Chem, Appl Phys Chem, S-10044 Stockholm, Sweden
[3] Lawrence Berkeley Natl Lab, Mol Foundry, Berkeley, CA 94720 USA
来源
MATERIALS ADVANCES | 2024年 / 5卷 / 15期
关键词
EFFICIENT; NANOCRYSTALS; COMPLEXES; TIO2;
D O I
10.1039/d4ma00094c
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Planar perovskite solar cells (PSCs) based on low-temperature solution-processed SnO2 electron transport layers (ETLs) usually suffer from energy losses within SnO2 ETLs or at SnO2/perovskite interfaces. Doping is an effective strategy to modify the properties of SnO2 and reduce such energy losses. Herein, Ce ions are incorporated into solution-processed SnOx and Ce-doped SnOx ETLs are fabricated for planar PSCs via inkjet printing. The Ce-doped SnOx ETL shows enhanced conductivity and improved energy level alignment with the perovskite layer, which can facilitate charge extraction and transport capabilities. Ce doping also effectively passivates the surface defects of SnOx. The photoluminescence characterization reveals that the carrier recombination is suppressed within the perovskite film. As a result, an improved power conversion efficiency (PCE) of 15.77% is obtained for the planar PSC with a Ce-doped SnOx ETL, compared to that of 14.66% for the undoped device. Furthermore, this work demonstrates a sustainable fabrication method which has great potential for the upscaling of PSCs.
引用
收藏
页码:6270 / 6276
页数:7
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