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Cl-doped ZnO nanowires with metallic conductivity and their application for high-performance photoelectrochemical electrodes

  • Fei Wang
  • , Jung Hun Seo
  • , Zhaodong Li
  • , Alexander V. Kvit
  • , Zhenqiang Ma
  • , Xudong Wang
  • University of Wisconsin-Madison

Research output: Contribution to journalArticlepeer-review

89 Scopus citations

Abstract

Doping semiconductor nanowires (NWs) for altering their electrical and optical properties is a critical strategy for tailoring the performance of nanodevices. ZnO NWs grown by hydrothermal method are pervasively used in optoelectronic, photovoltaic, and piezoelectric energy-harvesting devices. We synthesized in situ Cl-doped ZnO NWs with metallic conductivity that would fit seamlessly with these devices and improve their performance. Possible Cl doping mechanisms were discussed. UV-visible absorption spectroscopy confirmed the visible light transparency of Cl-doped ZnO NWs. Cl-doped ZnO NW/TiO2 core/shell-structured photoelectrochemical (PEC) anode was fabricated to demonstrate the application potential of highly conductive ZnO NWs. Higher photocurrent density and overall PEC efficiency compared with the undoped ZnO NW-based device were achieved. The successful doping and low resistivity of ZnO could unlock the potential of ZnO NWs for applications in low-cost flexible transparent electrodes.

Original languageEnglish
Pages (from-to)1288-1293
Number of pages6
JournalACS Applied Materials and Interfaces
Volume6
Issue number2
DOIs
StatePublished - Jan 22 2014

Keywords

  • Cl-doped ZnO
  • nanowires
  • photoelectrochemical cell
  • transparent conductor

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