The influence of perovskite precursor composition on the morphology and photovoltaic performance of mixed halide MAPbI3-xClx solar cells

被引:39
|
作者
Tombe, Sekai [1 ,2 ]
Adam, Getachew [2 ]
Heilbrunner, Herwig [2 ]
Yumusak, Cigdem [2 ]
Apaydin, Dogukan Hazar [2 ]
Hailegnaw, Bekele [2 ]
Ulbricht, Christoph [2 ]
Arendse, Christopher J. [3 ]
Langhals, Heinz [2 ]
Iwuohaa, Emmanuel [3 ]
Sariciftci, Niyazi Serdar [2 ]
Scharber, Markus C. [2 ]
机构
[1] Univ Western Cape, Dept Chem, SensorLab, Robert Sobukwe Rd, ZA-7535 Cape Town, South Africa
[2] Johannes Kepler Univ Linz, Linz Inst Organ Solar Cells LIOS, Inst Phys Chem, Altenbergerstr 69, A-4040 Linz, Austria
[3] Univ Western Cape, Dept Phys, Private Bag X17, ZA-7535 Cape Town, South Africa
基金
新加坡国家研究基金会;
关键词
Perovskite precursor; Morphology; Photovoltaic performance; Electron transport layer; Shelf stability; SOLUTION-PROCESSED PEROVSKITE; HIGH-EFFICIENCY; LEAD TRIHALIDE; THIN-FILMS; LAYER-FREE; TRANSPORT; OXIDE; HYSTERESIS; STABILITY; CRYSTALLIZATION;
D O I
10.1016/j.solener.2018.01.083
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
A set of various perovskite precursor formulations was investigated to elucidate correlations between precursor composition and the crystal structure, film morphology as well as photovoltaic activity of H3CNH3PbI3-x Cl-x perovskite solar cells. Three precursor solutions in dimethylfromamide (DMF) with defined ratios of lead(II) halide (PbI2 and/or PbCl2) and methylammonium halide (H3CNH3I (MAI) and H3CNH3Cl (MACl)) such as 1:3 (PbCl2:MAI), 1:1:4 (PbI2:PbCl2:MAI) and 1:1:1 (PbI2:MAI:MACl) were used to prepare solar cells in primarily ambient atmosphere. Processing the 1:3 (PbCl2 :MAI) solution in ambient atmosphere yielded perovskite films with rather non-uniform morphology and devices with moderate performance. Perovskite thin films prepared from the 1:1:4 (PbI2:PbCl2:MAI) and 1:1:1 (PbI2:MAI:MACl) formulation showed nearly identical features, high crystallinity, large and compact micrometer-sized crystal domains, and good photovoltaic performance. This indicates that the overall ionic composition in the precursor solution is crucial for the perovskite formation, the source of these ions, however, appears nonrelevant. Furthermore, the effect of different electron transport layers (En), PCBM, bis-PCBM, and N-[4-(benzothiadiazol-4-yl)phenyl]-N'-(1-nonyldecyl)perylene-3,4,9,10-tetra-carboxdimide (a-PTCDI) on the photovoltaic performance was analyzed. The highest hysteresis-free power conversion efficiency (PCE) was achieved with PCBM (12.8%) followed by a-PTCDI (8.4%) and bis-PCBM (6%). The degradation of MAPbI(3-x)Cl(x), based devices stored in nitrogen atmosphere was primarily revealed by a loss in fill factor.
引用
收藏
页码:215 / 223
页数:9
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