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Ag/AgCl/rGO 异质结构光催化剂的简便制备及增强的光催化性能。

Facile fabrication and enhanced photocatalytic performance of Ag/AgCl/rGO heterostructure photocatalyst.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2013 Mar;5(6):2161-8. doi: 10.1021/am303225n. Epub 2013 Mar 5.

Abstract

Graphene/reduced graphene oxide (rGO) modification has been demonstrated to be an efficient route to improve the photocatalytic performance of various photocatalysts by promoting the effective separation of photogenerated electrons and holes. It is highly required to develop facile and environmental-friendly methods for the preparation of graphene-based photocatalytic materials. In this study, the Ag/AgCl/rGO heterostructure photocatalyst was fabricated by a mild oxidization reaction of hydrothermally prepared Ag/rGO in FeCl3 solution. It was found that the reduction of graphene oxide (GO) was accompanied with the in situ formation of metallic Ag in a Ag(NH3)2-immobilized GO solution during hydrothermal treatment, while the following in situ oxidation of metallic Ag by FeCl3 solution resulted in the formation of strongly coupled Ag/AgCl/rGO heterostructure photocatalyst. The photocatalytic experimental results indicated that all the resultant Ag/AgCl/rGO nanocomposite photocatalysts exhibited a much higher photocatalytic activity than the Ag/AgCl and physically mixed Ag/AgCl/rGO composite, and the Ag/AgCl/rGO (3.2 wt % rGO) showed the highest photocatalytic performance. The enhanced photocatalytic performance of Ag/AgCl/rGO heterostructures can be attributed to the cooperation effect of the effective separation of photogenerated carriers via strongly coupled rGO cocatalyst and the enrichment of organic molecules on the rGO nanosheets. Considering the facile preparation and its high photocatalytic activity, it is possible for the present Ag/AgCl/rGO nanocomposites to be widely applied in various fields such as air purification and wastewater treatment.

摘要

石墨烯/还原氧化石墨烯(rGO)的修饰被证明是一种有效的途径,可以通过促进光生电子和空穴的有效分离来提高各种光催化剂的光催化性能。因此,开发简便、环保的方法来制备基于石墨烯的光催化材料是非常有必要的。在这项研究中,Ag/AgCl/rGO 异质结构光催化剂是通过水热法制备的 Ag/rGO 在 FeCl3 溶液中温和氧化反应制备的。研究发现,在水热处理过程中,GO 的还原伴随着 Ag(NH3)2 固定 GO 溶液中金属 Ag 的原位形成,而随后 FeCl3 溶液中金属 Ag 的原位氧化导致了强耦合 Ag/AgCl/rGO 异质结构光催化剂的形成。光催化实验结果表明,所有制备的 Ag/AgCl/rGO 纳米复合材料光催化剂的光催化活性都比 Ag/AgCl 和物理混合的 Ag/AgCl/rGO 复合材料高得多,而 Ag/AgCl/rGO(3.2wt%rGO)表现出最高的光催化性能。Ag/AgCl/rGO 异质结构增强的光催化性能可以归因于强耦合 rGO 助催化剂有效分离光生载流子和 rGO 纳米片上有机分子富集的协同作用。考虑到其简便的制备方法和高的光催化活性,本研究中的 Ag/AgCl/rGO 纳米复合材料有可能在空气净化和废水处理等各个领域得到广泛应用。

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