4.6 Article

Dual-Function Smart Electrolyte for Dye-Sensitized Solar Cells: 5-Mercaptotetrazoles as Redox Mediator and Corrosion Repressor

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JOURNAL OF PHYSICAL CHEMISTRY C
卷 119, 期 34, 页码 19613-19618

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.5b05195

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资金

  1. CSIRO through OCE Science Leader program
  2. Australian Government through Australian Renewable Energy Agency (ARENA)
  3. Australian Solar Institute
  4. Victorian Government through DSDBI
  5. Victorian Government through VSA
  6. Victorian State Government Department of Primary Industry
  7. Bluescope Steel
  8. Innovia Films
  9. Innovia Security
  10. Bosch (Victorian Organic Solar Cells Consortium)
  11. Australian National Fabrication Facility (ANFF)
  12. Commonwealth of Australia
  13. Victorian Government
  14. ARC through an ARE fellowship
  15. Munich Centre for Advanced Photonics (MAP) - German Research Foundation (DFG) via German Excellence Initiative

向作者/读者索取更多资源

Metal charge collectors are an essential component of photovoltaic modules, facilitating charge collection over larger areas. Their application in dye-sensitized solar cells has so far been hampered by two major factors: (1) the redox mediators employed in these photoelectrochemical devices are generally corrosive to metals, and (2) they generally show low overpotentials for their redox reactions on these metal surfaces, which leads to significant recombination losses at the photoanode. Here, a thiolate-based redox mediator, sodium 1-phenyl-1H-5-mercaptotetrazole (T-ph), is shown to form self-assembled monolayers on silver electrodes and to act as an effective corrosion protection layer while also exhibiting high overpotentials on these metals at the photoanode. The anticorrosive properties are strongly dependent on the structure of the thiolate. Replacement of the phenyl group in T-ph with a methyl substituent accelerates the corrosion process by orders of magnitude. Finally, we demonstrate electrolytes in a 60 cm(2) dye-sensitized solar cell comprising unprotected silver charge-collecting the applicability of T-ph-based electrodes.

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