Design of europium doped SiO2–TiO2 hybrids as novel luminescent photocatalyst

SiO2/TiO2:Eu3+ composite materials were facially prepared by the sol–gel technique and all the as-derived powders exhibited europium characteristic red emissions under multiple excitation wavelengths extended to visible range (395 and 465nm). The influence factors such as Si/Ti ratio, orders of hydr...

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Veröffentlicht in:Journal of luminescence 2012-07, Vol.132 (7), p.1639-1641
Hauptverfasser: Zheng, Yuhui, Chen, Yanna, Yang, Chuqin, Wang, Qianming, Lin, Jintai, Zhang, Liguo
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container_end_page 1641
container_issue 7
container_start_page 1639
container_title Journal of luminescence
container_volume 132
creator Zheng, Yuhui
Chen, Yanna
Yang, Chuqin
Wang, Qianming
Lin, Jintai
Zhang, Liguo
description SiO2/TiO2:Eu3+ composite materials were facially prepared by the sol–gel technique and all the as-derived powders exhibited europium characteristic red emissions under multiple excitation wavelengths extended to visible range (395 and 465nm). The influence factors such as Si/Ti ratio, orders of hydrolysis, annealing temperature and doping concentration were systematically studied. The novel photocatalytic behavior for removing phenol was thoroughly investigated. ► SiO2/TiO2:Eu3+ with red luminescence was designed. ► The composites can be emissive under multiple excitation wavelengths. ► SiO2/TiO2:Eu3+ can remove phenol under irradiation.
doi_str_mv 10.1016/j.jlumin.2012.01.022
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subjects Condensed matter: electronic structure, electrical, magnetic, and optical properties
Design engineering
Emission
Europium
Exact sciences and technology
Hydrolysis
Luminescence
Optical properties and condensed-matter spectroscopy and other interactions of matter with particles and radiation
Other solid inorganic materials
Photocatalysis
Photocatalytic
Photoluminescence
Physics
Silicon dioxide
Sol–gel
Titanium dioxide
Wavelengths
title Design of europium doped SiO2–TiO2 hybrids as novel luminescent photocatalyst
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