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Metal halide solid-state surface treatment for high efficiency PbS and PbSe QD solar cells.
Crisp, Ryan W; Kroupa, Daniel M; Marshall, Ashley R; Miller, Elisa M; Zhang, Jianbing; Beard, Matthew C; Luther, Joseph M.
Afiliação
  • Crisp RW; 1] National Renewable Energy Laboratory, Golden, CO 80401 USA [2] Department of Physics, Colorado School of Mines, Golden, CO 80401 USA.
  • Kroupa DM; 1] National Renewable Energy Laboratory, Golden, CO 80401 USA [2] Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309 USA.
  • Marshall AR; 1] National Renewable Energy Laboratory, Golden, CO 80401 USA [2] Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309 USA.
  • Miller EM; National Renewable Energy Laboratory, Golden, CO 80401 USA.
  • Zhang J; 1] National Renewable Energy Laboratory, Golden, CO 80401 USA [2] School of Optical and Electronic Information, Huazhong University of Science and Technology, Hubei 430074, China.
  • Beard MC; National Renewable Energy Laboratory, Golden, CO 80401 USA.
  • Luther JM; National Renewable Energy Laboratory, Golden, CO 80401 USA.
Sci Rep ; 5: 9945, 2015 Apr 24.
Article em En | MEDLINE | ID: mdl-25910183
ABSTRACT
We developed a layer-by-layer method of preparing PbE (E = S or Se) quantum dot (QD) solar cells using metal halide (PbI2, PbCl2, CdI2, or CdCl2) salts dissolved in dimethylformamide to displace oleate surface ligands and form conductive QD solids. The resulting QD solids have a significant reduction in the carbon content compared to films treated with thiols and organic halides. We find that the PbI2 treatment is the most successful in removing alkyl surface ligands and also replaces most surface bound Cl(-) with I(-). The treatment protocol results in PbS QD films exhibiting a deeper work function and band positions than other ligand exchanges reported previously. The method developed here produces solar cells that perform well even at film thicknesses approaching a micron, indicating improved carrier transport in the QD films. We demonstrate QD solar cells based on PbI2 with power conversion efficiencies above 7%.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2015 Tipo de documento: Article