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SnX (X = S, Se) thin films as cost-effective and highly efficient counter electrodes for dye-sensitized solar cells

Solution-deposited SnSe and SnS thin films demonstrate excellent electrocatalytic activity toward the triiodide reduction in dye-sensitized solar cells (DSCs), even better than that of the conventional noble Pt electrode used in DSCs. An enhanced photovoltaic efficiency with the maximum value of 9.4... Full description

Journal Title: Chemical Communications 2015, Vol.51(38), pp.8108-8111
Main Author: Liu, Feng
Other Authors: Zhu, Jun , Xu, Yafeng , Zhou, Li , Li, Yi , Hu, Linhua , Yao, Jianxi , Dai, Songyuan
Format: Electronic Article Electronic Article
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ID: ISSN: 1359-7345 ; E-ISSN: 1364-548X ; DOI: 10.1039/c5cc00772k
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recordid: rscc5cc00772k
title: SnX (X = S, Se) thin films as cost-effective and highly efficient counter electrodes for dye-sensitized solar cells
format: Article
creator:
  • Liu, Feng
  • Zhu, Jun
  • Xu, Yafeng
  • Zhou, Li
  • Li, Yi
  • Hu, Linhua
  • Yao, Jianxi
  • Dai, Songyuan
subjects:
  • Reduction
  • Dyes
  • Solar Cells
  • Electrodes
  • Platinum
  • Thin Films
  • Photovoltaic Cells
  • Differential Scanning Calorimetry
  • Miscellaneous Sciences (So)
  • Chemical and Electrochemical Properties (MD)
  • Chemical and Electrochemical Properties (Ep)
  • Chemical and Electrochemical Properties (Ed)
  • Chemical and Electrochemical Properties (EC)
  • Electronics and Communications Milieux (General) (Ea)
ispartof: Chemical Communications, 2015, Vol.51(38), pp.8108-8111
description: Solution-deposited SnSe and SnS thin films demonstrate excellent electrocatalytic activity toward the triiodide reduction in dye-sensitized solar cells (DSCs), even better than that of the conventional noble Pt electrode used in DSCs. An enhanced photovoltaic efficiency with the maximum value of 9.4% was thus achieved, higher than that with Pt (9.0%).
language:
source:
identifier: ISSN: 1359-7345 ; E-ISSN: 1364-548X ; DOI: 10.1039/c5cc00772k
fulltext: fulltext
issn:
  • 1359-7345
  • 1364-548X
  • 1364548X
  • 13597345
url: Link


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titleSnX (X = S, Se) thin films as cost-effective and highly efficient counter electrodes for dye-sensitized solar cells
creatorLiu, Feng ; Zhu, Jun ; Xu, Yafeng ; Zhou, Li ; Li, Yi ; Hu, Linhua ; Yao, Jianxi ; Dai, Songyuan
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descriptionSolution-deposited SnSe and SnS thin films demonstrate excellent electrocatalytic activity toward the triiodide reduction in dye-sensitized solar cells (DSCs), even better than that of the conventional noble Pt electrode used in DSCs. An enhanced photovoltaic efficiency with the maximum value of 9.4% was thus achieved, higher than that with Pt (9.0%).
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subjectReduction ; Dyes ; Solar Cells ; Electrodes ; Platinum ; Thin Films ; Photovoltaic Cells ; Differential Scanning Calorimetry ; Miscellaneous Sciences (So) ; Chemical and Electrochemical Properties (MD) ; Chemical and Electrochemical Properties (Ep) ; Chemical and Electrochemical Properties (Ed) ; Chemical and Electrochemical Properties (EC) ; Electronics and Communications Milieux (General) (Ea);
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titleSnX (X = S, Se) thin films as cost-effective and highly efficient counter electrodes for dye-sensitized solar cells
descriptionSolution-deposited SnSe and SnS thin films demonstrate excellent electrocatalytic activity toward the triiodide reduction in dye-sensitized solar cells (DSCs), even better than that of the conventional noble Pt electrode used in DSCs. An enhanced photovoltaic efficiency with the maximum value of 9.4% was thus achieved, higher than that with Pt (9.0%).
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titleSnX (X = S, Se) thin films as cost-effective and highly efficient counter electrodes for dye-sensitized solar cells
authorLiu, Feng ; Zhu, Jun ; Xu, Yafeng ; Zhou, Li ; Li, Yi ; Hu, Linhua ; Yao, Jianxi ; Dai, Songyuan
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abstractSolution-deposited SnSe and SnS thin films demonstrate excellent electrocatalytic activity toward the triiodide reduction in dye-sensitized solar cells (DSCs), even better than that of the conventional noble Pt electrode used in DSCs. An enhanced photovoltaic efficiency with the maximum value of 9.4% was thus achieved, higher than that with Pt (9.0%).
doi10.1039/c5cc00772k
pages8108-8111
date2015-04-28