Improving the Long-Term Stability of Doped Spiro-Type Hole-Transporting Materials in Planar Perovskite Solar Cells

被引:7
|
作者
Urieta-Mora, Javier [1 ,2 ]
Garcia-Benito, Ines [1 ,3 ]
Illicachi, Luis A. [4 ]
Calbo, Joaquin [5 ]
Arago, Juan [5 ]
Molina-Ontoria, Agustin [1 ,2 ]
Orti, Enrique [5 ]
Martin, Nazario [1 ,2 ]
Nazeeruddin, Mohammad Khaja [3 ]
机构
[1] Univ Complutense Madrid, Dept Quim Organ, Fac CC Quim, Av Complutense S-N, Madrid 28040, Spain
[2] IMDEA Nanociencia, C Faraday 9,Ciudad Univ Cantoblanco, Madrid 29049, Spain
[3] EPFL VALAIS, Grp Mol Engn Funct Mat, CH-1951 Sion, Switzerland
[4] Univ Valle, Ctr Res & Innovat Bioinformat & Photon CIBioFi, Grp Invest Compuestos Heterocicl, Calle 13 100-00,Edificio E20, Cali, Colombia
[5] Univ Valencia, Inst Ciencia Mol, Catedrat Jose Beltran 2, Paterna 46980, Spain
基金
瑞士国家科学基金会;
关键词
hole-transporting materials; perovskite solar cells; photophysics; spiro-OMeTAD; stabilities; HALIDE PEROVSKITES; HIGHLY EFFICIENT; LOW-COST; TRIHALIDE;
D O I
10.1002/solr.202100650
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The improvement of the long-term stability of perovskite-based solar cells (PSCs) toward commercialization is closely linked to the development of cutting-edge charge-transporting materials. The progress on the design and the synthesis of new hole-transporting materials (HTMs) is synergistically attaining both top efficiencies and promising stability. Herein, the synthesis and characterization of two doped-HTMs based on electron-rich spiranic cores, namely, 9H-quinolinophenoxazine (spiro-POZ) and 9H-quinolinophenothiazine (spiro-PTZ), are presented. The novel HTMs exhibit excellent solubility, optimal highest occupied molecular orbital energy, and excellent thermal stability with glass transition temperatures higher than those for spiro-OMeTAD. [(FAPbI(3))(0.87)(MAPbBr(3))(0.13)](0.92)[CsPbI3](0.08)-based solar cells using the new spiro-type HTMs deliver power conversion efficiencies (PCEs) around 17% for mesoporous cells, and higher than 18% in planar configurations, matching the PCE of spiro-OMeTAD. Remarkably, doped spiro-POZ and spiro-PTZ exhibit excellent long-term stability in planar devices, retaining over 84% of their initial efficiency after more than 300 days of exposure to ambient conditions. Furthermore, after 1200 h under continuous 1 sun illumination, the PCE of the PSCs based on spiro-POZ and spiro-PTZ decreases by only 6%.
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页数:10
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