Synthesis of Mesoporous Silica-Embedded TiO2 Loaded with Ag Nanoparticles for Photocatalytic Hydrogen Evolution from Water Splitting
来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2017年第1期
论文作者:胡秀丽 XIAO Leqin JIAN Xiaoxia ZHOU Weiliang
文章页码:67 - 75
摘 要:Ag loaded mesoporous silica-embedded TiO2 nanocomposites were successfully synthesized via two different routes,including one-pot solvothermal method and solvothermal-chemical reduction method,both using Titanium(Ⅳ) n-butoxide(Ti(OC4H9)4) as a precursor,formic acid as a solvent and reducing agent,silver nitrate as a silver source and tetraethyl silicate(TEOS) as a stabilizer.The transmission electron microscopic(TEM) images showed that silica-embedded anatase TiO2 sample exhibited approximately rhombic shape and Ag nanoparticles could be embedded into the nanocomposites or deposited on the surface with high dispersion.The N2 adsorption-desorption isotherms indicated that the silica-embedded anatase TiO2 had obvious mesoporous structure with a BET specific surface area of 203.5 m2·g-1.All Ag loaded silica-embedded TiO2composites showed a higher photocatalytic H2-generation activity from water splitting under simulative solar light irradiation than that of TiO2 products.The maximum H2 production rate(6.10 mmol·h-1·g-1) was obtained over 2%Ag/silica-embedded TiO2 nanocomposites(2%Ag/MST) prepared by solvothermal-chemical reduction method,which was 20 times that achieved on the silica-embedded TiO2 sample.The enhanced photocatalytic H2-evolution activity of Ag loaded mesoporous silica-embedded TiO2 nanocomposites can be attributed to the multi-function of surface Ag co-catalyst,mesoporous structure,and embedding of silica.
胡秀丽1,2,XIAO Leqin1,JIAN Xiaoxia1,ZHOU Weiliang1
1. School of Chemical Engineering, Nanjing University of Science and Technology2. School of Chemistry and Materials Engineering, Changshu Institute of Technology
摘 要:Ag loaded mesoporous silica-embedded TiO2 nanocomposites were successfully synthesized via two different routes,including one-pot solvothermal method and solvothermal-chemical reduction method,both using Titanium(Ⅳ) n-butoxide(Ti(OC4H9)4) as a precursor,formic acid as a solvent and reducing agent,silver nitrate as a silver source and tetraethyl silicate(TEOS) as a stabilizer.The transmission electron microscopic(TEM) images showed that silica-embedded anatase TiO2 sample exhibited approximately rhombic shape and Ag nanoparticles could be embedded into the nanocomposites or deposited on the surface with high dispersion.The N2 adsorption-desorption isotherms indicated that the silica-embedded anatase TiO2 had obvious mesoporous structure with a BET specific surface area of 203.5 m2·g-1.All Ag loaded silica-embedded TiO2composites showed a higher photocatalytic H2-generation activity from water splitting under simulative solar light irradiation than that of TiO2 products.The maximum H2 production rate(6.10 mmol·h-1·g-1) was obtained over 2%Ag/silica-embedded TiO2 nanocomposites(2%Ag/MST) prepared by solvothermal-chemical reduction method,which was 20 times that achieved on the silica-embedded TiO2 sample.The enhanced photocatalytic H2-evolution activity of Ag loaded mesoporous silica-embedded TiO2 nanocomposites can be attributed to the multi-function of surface Ag co-catalyst,mesoporous structure,and embedding of silica.
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