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InSitu Fabrication of Ag/Ag3PO4/Graphene Triple Heterostructure Visible-Light Photocatalyst through Graphene-Assisted Reduction Strategy

机译:通过石墨烯辅助还原策略制备Ag / Ag3PO4 /石墨烯三重异质结构可见光光催化剂

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摘要

The design and architecture of the nanoheterostructure composites was a key aim of material scientists owing to the central role of the composites in the improvement in photogenerated charge separation and quantum efficiency. The Ag/Ag3PO4/graphene triple heterostructure composites were fabricated insitu by the redox reaction between Ag+ and graphene. The structural evolution of these heterostructures was characterized by using XRD and TEM. The XPS and surface photovoltage spectroscopy revealed the photogenerated electron-hole pair's transmission process within the composites. The Ag/Ag3PO4/graphene triple heterostructure could improve the charge separation rate under visible-light irradiation. Simultaneously, the photocorrosion phenomenon can be inhibited effectively by the triple heterostructure, which leads to the high structural stability for photocatalysis. Graphene's fine adsorption performance for O2 and organic pollutants is also an important factor in improving the photocatalytic efficiency. Thus, the novel Ag/Ag3PO4/graphene triple heterostructure demonstrates improved photocatalytic activity and structural stability under visible-light irradiation. This facile and straightforward method has promising applications in the fabrication of different graphene-based heterostructure photocatalyses.
机译:纳米能结构复合材料的设计和架构是由于复合材料在光发化电荷分离和量子效率的改善中的核心作用,材料科学家的关键目标。通过Ag +和石墨烯之间的氧化还原反应制造Ag / Ag3PO4 /石墨烯三重异质结构复合材料。通过使用XRD和TEM来表征这些异质结构的结构演变。 XPS和表面光电谱仪揭示了复合材料中的光静电电子 - 空穴对的传动过程。 Ag / Ag3PO4 /石墨烯三重异质结构可以在可见光照射下改善电荷分离速率。同时,通过三重异性结构可以有效地抑制光腐蚀现象,这导致光催化的高结构稳定性。石墨烯对O2和有机污染物的精细吸附性能也是提高光催化效率的重要因素。因此,新的Ag / Ag3PO4 /石墨烯三重异质结构显示出可见光照射下的显着光催化活性和结构稳定性。这种容易和直接的方法具有在制造基于石墨烯的异质结构光常数的制造中的有前途的应用。

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