Self-assembled synthesis of oxygen-doped g-C3N4 nanotubes in enhancement of visible-light photocatalytic hydrogen

被引:16
|
作者
Yizeng Zhang [1 ]
Zhiwu Chen [1 ]
Jinliang Li [2 ]
Zhenya Lu [1 ]
Xin Wang [1 ]
机构
[1] School of Materials Science and Engineering, South China University of Technology
[2] Siyuan Laboratory, Guangdong Provincial Engineering Technology Research Center of Vacuum Coating Technologies and New Energy Materials, Department of Physics,Jinan University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TQ116.2 [氢气]; O643.36 [催化剂]; O644.1 [光化学];
学科分类号
摘要
Currently,photocatalytic water splitting is regarded as promising technology in renewable energy generation.However,the conversion efficiency suffers great restriction due to the rapid recombination of charge carriers.Rational designed the structure and doping elements become important alternative routes to improve the performance of photocatalyst.In this work,we rational designed oxygen-doped graphitic carbon nitride(OCN) nanotubes derived from supermolecular intermediates for photocata lytic water splitting.The as prepared OCN nanotubes exhibit an outstanding hydrogen evolution rate of 73.84 μmol h-1,outperforming the most of reported one dimensional(1 D) g-C3N4previously.Due to the rational oxygen doping,the band structure of g-C3N4is meliorated,which can narrow the band gap and reduce the recombination rate of photogene rated carriers.Furthermore,the hollow nanotube structure of OCN also provide multiple diffuse reflection during photocata lytic reaction,which can significantly promote the utilization capacity of visible light and enhance the photocatalytic water splitting performance.It is believed that our work not only rationally controls the nanostructure,but also introduces useful heteroatom into the matrix of photocatalyst,which provides an effective way to design high-efficiency g-C3N4photocatalyst.
引用
收藏
页码:36 / 44
页数:9
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