Laminated Hybrid Junction of Sulfur-Doped TiO2 and a Carbon Substrate Derived from Ti3C2 MXenes: Toward Highly Visible Light-Driven Photocatalytic Hydrogen Evolution

被引:199
作者
Yuan, Wenyu [1 ,2 ]
Cheng, Laifei [1 ,2 ]
An, Yurong [2 ]
Lv, Shilin [1 ,2 ]
Wu, Heng [1 ,2 ]
Fan, Xiaoli [2 ]
Zhang, Yani [1 ,2 ]
Guo, Xiaohui [3 ]
Tang, Junwang [4 ]
机构
[1] Northwestern Polytech Univ, Sci & Technol Thermostruct Composite Mat Lab, Xian 710072, Shaanxi, Peoples R China
[2] Northwestern Polytech Univ, State Key Lab Solidificat Proc, Xian 710072, Shaanxi, Peoples R China
[3] Northwest Univ, Coll Chem & Mat Sci, Minist Educ, Key Lab Synthet & Nat Funct Mol Chem, Xian 710069, Shaanxi, Peoples R China
[4] UCL, Dept Chem Engn, Torrington Pl, London WC1E 7JE, England
基金
中国国家自然科学基金;
关键词
carbon; doping; MXenes; photocatalytic materials; TiO2; GRAPHITIC CARBON; EFFICIENT ELECTROCATALYST; HYDROTHERMAL SYNTHESIS; ENERGY-CONVERSION; NANOTUBE ARRAYS; GRAPHENE; NITRIDE; PERFORMANCE; COMPOSITES; DIOXIDE;
D O I
10.1002/advs.201700870
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
TiO2 is an ideal photocatalyst candidate except for its large bandgap and fast charge recombination. A novel laminated junction composed of defect-controlled and sulfur-doped TiO2 with carbon substrate (LDC-S-TiO2/C) is synthesized using the 2D transition metal carbides (MXenes) as a template to enhance light absorption and improve charge separation. The prepared LDC-S-TiO2/C catalyst delivers a high photocatalytic H-2 evolution rate of 333 mu mol g(-1) h(-1) with a high apparent quantum yield of 7.36% at 400 nm and it is also active even at 600 nm, resulting into a 48 time activity compared with L-TiO2/C under visible light irradiation. Further theoretical modeling calculation indicates that such novel approach also reduces activation energy of hydrogen production apart from broadening the absorption wavelength, facilitating charge separation, and creating a large surface area substrate. This synergic effect can also be applied to other photocatalysts' modification. The study provides a novel approach for synthesis defective metal oxides based hybrids and broaden the applications of MXene family.
引用
收藏
页数:10
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