光催化
X射线光电子能谱
材料科学
异质结
可见光谱
光化学
制氢
化学工程
光谱学
氢
光致发光
兴奋剂
透射电子显微镜
催化作用
光电子学
纳米技术
化学
有机化学
物理
量子力学
工程类
作者
Cong Ji,Su‐Na Yin,Shasha Sun,Shengyang Yang
标识
DOI:10.1016/j.apsusc.2017.11.233
摘要
Abstract Cu2O nanoparticles doped g-C3N4 are synthesized via an in situ method and investigated in detail by IR techniques, X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, ultraviolet visible diffuse reflection spectroscopy, and photoluminescence spectroscopy. The as-prepared Cu2O/g-C3N4 hybrids demonstrate enhanced photocatalytic activity toward hydrogen generation compared to pure bulk g-C3N4, the effect of Cu2O content on the rate of visible light photocatalytic hydrogen evolution reveals the optimal hydrogen evolution rate can reach 33.2 μmol h−1 g−1, which is about 4 times higher that of pure g-C3N4. The enhanced photocatalytic activity can be attributed to the improved separation and transfer of photogenerated electron–hole pairs at the intimate interface between g-C3N4 and Cu2O. A possible photocatalytic mechanism of the Cu2O/g-C3N4 composite is also discussed. This mediator-free in situ chemical doping strategy developed in this work will contribute to the achievement of other multicomponent photocatalysts.
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