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DSA-type Ti/IrxSn(1-x)O(2) electrodes were prepared by thermal decomposition method. The first-principles calculations were employed to study the effects of the doping element and its content to the main oxides on the relationship between the electronic structures and the photoelectrocatalytic(PEC) activity of Ti/IrxSn(1-x)O(2) electrodes. The performance of the coatings was characterized using XRD, XPS, LSV and EIS. The results showed that: the band gap decreased with the increase of Ir content. An impurity level appeared in the forbidden band, which was conducive to the separation of photogenerated electrons and holes, improving the conductivity and photocatalytic activity of the electrodes. However, the excessive content of Ir would promote the recombination of electrons and holes and reduce the band gap. When the Ir content was above 25%, the forbidden band of the oxide coating could disappeare. The conductivity of the coating further improved, it sacrificed the photogenerated carriers and thus reduced photocatalytic activity of the electrode. Besides, reducing band gap would weaken the redox ability of photo generated electron-hole pair. Therefore, The PEC activity of the Ti/IrxSn(1-x)O(2) electrodes was mainly depened on the effects of Ir content on the electronic structures of the IrxSn(1-x)O(2) coatings. In our experiments, the Ti/Ir0.0625Sn0.9375O2 electrode exhibited better PEC properties. (C) 2017 Elsevier B.V. All rights reserved.
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APPLIED SURFACE SCIENCE
ISSN: 0169-4332
Year: 2017
Volume: 422
Page: 891-899
4 . 4 3 9
JCR@2017
6 . 3 0 0
JCR@2023
ESI Discipline: MATERIALS SCIENCE;
ESI HC Threshold:306
JCR Journal Grade:1
CAS Journal Grade:1
Cited Count:
WoS CC Cited Count: 18
SCOPUS Cited Count: 20
ESI Highly Cited Papers on the List: 0 Unfold All
WanFang Cited Count:
Chinese Cited Count:
30 Days PV: 1
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