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Construction of a 2D Graphene-Like MoS2/C3N4 Heterojunction with Enhanced Visible-Light Photocatalytic Activity and Photoelectrochemical Activity

机译:具有增强的可见光光催化活性和光电化学活性的二维石墨烯类MoS2 / C3N4异质结的构建

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摘要

A novel graphene-like MoS2/C3N4 (GL-MoS2/C3N4) composite photocatalyst has been synthesized by a facile ethylene glycol (EG)-assisted solvothermal method. The structure and morphology of this GL-MoS2/C3N4 photocatalyst have been investigated by a wide range of characterization methods. The results showed that GL-MoS2 was uniformly distributed on the surface of GL-C3N4 forming a heterostructure. The obtained composite exhibited strong absorbing ability in the ultraviolet (UV) and visible regions. When irradiated with visible light, the composite photocatalyst showed high activity superior to those of the respective individual components GL-MoS2 and GL-C3N4 in the degradation of methyl orange. The enhanced photocatalytic activity of the composite may be attributed to the efficient separation of electron-hole pairs as a result of the matching band potentials between GL-MoS2 and GL-C3N4. Furthermore, a photocatalytic mechanism for the composite material has been proposed, and the photocatalytic reaction kinetics has been measured. Moreover, GL-MoS2/C3N4 could serve as a novel sensor for trace amounts of Cu2+ since it exhibited good selectivity for Cu2+ detection in water.
机译:通过一种简便的乙二醇(EG)辅助溶剂热法合成了一种新型的石墨烯样MoS2 / C3N4(GL-MoS2 / C3N4)复合光催化剂。已通过多种表征方法研究了这种GL-MoS2 / C3N4光催化剂的结构和形态。结果表明,GL-MoS2均匀分布在GL-C3N4的表面,形成异质结构。所获得的复合材料在紫外线(UV)和可见光区域显示出强吸收能力。当用可见光照射时,在甲基橙的降解中,复合光催化剂显示出优于各个单独组分GL-MoS2和GL-C3N4的活性。复合材料增强的光催化活性可以归因于GL-MoS2和GL-C3N4之间匹配的带电势,有效地分离了电子-空穴对。此外,已经提出了用于复合材料的光催化机理,并且已经测量了光催化反应动力学。此外,GL-MoS2 / C3N4可以作为痕量Cu2 +的新型传感器,因为它对水中的Cu2 +检测具有良好的选择性。

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