Codoping titanium dioxide nanowires with tungsten and carbon for enhanced photoelectrochemical performance

  • Cho, In Sun
  • Lee, Chi Hwan
  • Feng, Yunzhe
  • Logar, Manca
  • Rao, Pratap M.
  • ... Kim, Dong Rip
  • 외 3명
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초록

Recent density-functional theory calculations suggest that codoping TiO2 with donor-acceptor pairs is more effective than monodoping for improving photoelectrochemical water-splitting performance because codoping can reduce charge recombination, improve material quality, enhance light absorption and increase solubility limits of dopants. Here we report a novel ex-situ method to codope TiO2 with tungsten and carbon (W, C) by sequentially annealing W-precursor-coated TiO2 nanowires in flame and carbon monoxide gas. The unique advantages of flame annealing are that the high temperature (>1,000 degrees C) and fast heating rate of flame enable rapid diffusion of W into TiO2 without damaging the nanowire morphology and crystallinity. This is the first experimental demonstration that codoped TiO2:(W, C) nanowires outperform monodoped TiO2:W and TiO2:C and double the saturation photocurrent of undoped TiO2 for photoelectrochemical water splitting. Such significant performance enhancement originates from a greatly improved electrical conductivity and activity for oxygen-evolution reaction due to the synergistic effects of codoping.

키워드

DOPED TIO2WATERHYDROGENPHOTOCATALYSISDEGRADATIONEFFICIENTNANORODS
제목
Codoping titanium dioxide nanowires with tungsten and carbon for enhanced photoelectrochemical performance
저자
Cho, In SunLee, Chi HwanFeng, YunzheLogar, MancaRao, Pratap M.Cai, LiliKim, Dong RipSinclair, RobertZheng, Xiaolin
DOI
10.1038/ncomms2729
발행일
2013-04
유형
Article
저널명
Nature Communications
4
페이지
1 ~ 10