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Coupling of W-Doped SnO2 and TiO2 for Efficient Visible-Light Photocatalysis
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  • Coupling of W-Doped SnO2 and TiO2 for Efficient Visible-Light Photocatalysis
  • Coupling of W-Doped SnO2 and TiO2 for Efficient Visible-Light Photocatalysis
저자명
Rawal. Sher Bahadur,Ojha. Devi Prashad,Choi. Young Sik,Lee. Wan In
간행물명
Bulletin of the Korean Chemical Society
권/호정보
2014년|35권 3호|pp.913-918 (6 pages)
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대한화학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Five mol % tungsten-doped tin oxide ($W_{0.05}Sn_{0.95}O_2$, TTO5) was prepared by co-precipitation of $SnCl_4{cdot}5H_2O$ and $WCl_4$, followed by calcination at $1000^{circ}C$. The as-prepared TTO5 was in the pure cassiterite phase with a particle size of ~50 nm and optical bandgap of 2.51 eV. Herein it was applied for the formation of TTO5/$TiO_2$ heterojunctions by covering the TTO5 surface with $TiO_2$ by sol-gel method. Under visible-light irradiation (${lambda}{geq}420$ nm), TTO5/$TiO_2$ showed a significantly high photocatalytic activity in removing gaseous 2-propanol (IP) and evolving $CO_2$. It is deduced that its high visible-light activity is caused by inter-semiconductor holetransfer between the valence band (VB) of TTO5 and $TiO_2$, since the TTO5 nanoparticle (NP) exhibits the absorption edge at ~450 nm and its VB level is located more positive side than that of $TiO_2$. The evidence for the hole-transport mechanism between TTO5 and $TiO_2$ was also investigated by monitoring the holescavenging reaction with 1,4-terephthalic acid (TA).