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Switched Photocurrent on Tin Sulfide-Based Nanoplate Photoelectrodes

  • Hongjun Chen
  • , Miaoqiang Lyu
  • , Meng Zhang
  • , Krishna Feron
  • , Debra J. Searles
  • , Matthew Dargusch
  • , Xiangdong Yao
  • , Lianzhou Wang
  • University of Queensland
  • CSIRO
  • University of Newcastle

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

A new type of SnS2nanoplate photoelectrode is prepared by using a mild wet-chemical method. Depending on the calcination temperatures, SnS2-based photoelectrodes can either retain their n-type nature with greatly enhanced anodic photocurrent density (ca. 1.2 mA cm−2at 0.8 V vs. Ag/AgCl) or be completely converted into p-type SnS to generate approximately 0.26 mA cm−2cathodic photocurrent density at −0.8 V vs. Ag/AgCl. The dominance of sulfur and tin vacancies are found to account for the dramatically different photoelectrochemical behaviors of n-type SnS2and p-type SnS photoelectrodes. In addition, the band structures of n-type SnS2and p-type SnS photoelectrodes are also deduced, which may provide an effective strategy for developing SnS2/SnS films with controllable energy-band levels through a simple calcination treatment.

Original languageEnglish
Pages (from-to)670-674
Number of pages5
JournalChemSusChem
Volume10
Issue number4
DOIs
StatePublished - 22 Feb 2017

Keywords

  • calcination
  • nanostructures
  • photoelectrochemistry
  • semiconductors
  • tin

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