首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Photo-assisted synthesis of Ag3PO4/reduced graphene oxide/Ag heterostructure photocatalyst with enhanced photocatalytic activity and stability under visible light
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Photo-assisted synthesis of Ag3PO4/reduced graphene oxide/Ag heterostructure photocatalyst with enhanced photocatalytic activity and stability under visible light

机译:光辅助合成Ag3PO4 /还原氧化石墨烯/ Ag异质结构光催化剂的光催化活性和可见光稳定性

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摘要

A novel Ag3PO4/reduced graphene oxide/Ag nanocrystals (Ag3PO4/RGO/Ag) heterostructure photocatalyst has been synthesized using a facile photo-assisted reduction method for the first time. The Ag3PO4/RGO/Ag that consists of close chemical bonding between RGO and Ag3PO4 nanoparticles as well as dispersive plasmonic Ag nanocrystals on the RGO sheets exhibited superior photoeatalytic activity and stability to bare Ag3PO4, Ag/Ag3PO4 and Ag3PO4/GO in degradation of Rhodamine B and phenol under visible light. It is suggested that the photo-generated electrons in Ag3PO4 can be transferred to RGO/Ag, leading to efficient separation and transfer of electron-hole pairs. Meanwhile, under light irradiation, the plasmonic Ag nanocrystals also generate electron-hole pairs through surface plasmon resonance (SPR), in which the active electrons can facilitate the formation of additional active species of O2·~- for photo-catalysis whereas the holes can be filled by electrons from RGO. As a result, both the photocorrosion of Ag3PO4 and the recombination of electron-hole pairs are suppressed due to the special electron transfer route of Ag3PO4-> RGO->Ag in the heterostructure. This work suggests that the reasonable combination of semiconductors and graphene decorated with noble metallic nanocrystals can provide a versatile strategy for the synthesis of high efficient heterostructed photocatalysts.
机译:首次采用简便的光辅助还原法合成了新型的Ag3PO4 /还原石墨烯/ Ag纳米晶体(Ag3PO4 / RGO / Ag)异质结构光催化剂。由RGO和Ag3PO4纳米颗粒之间的紧密化学键以及RGO片上的分散等离激元Ag纳米晶体组成的Ag3PO4 / RGO / Ag在裸露的罗丹明B中表现出优异的光催化活性和对裸露的Ag3PO4,Ag / Ag3PO4和Ag3PO4 / GO的稳定性。和苯酚在可见光下。建议将Ag3PO4中的光生电子转移到RGO / Ag,从而有效分离和转移电子-空穴对。同时,在光照射下,等离子Ag纳米晶体还通过表面等离振子共振(SPR)产生电子-空穴对,其中活性电子可促进形成额外的O2·〜-活性物种用于光催化,而空穴可由RGO的电子填充。结果,由于异质结构中Ag3PO4-> RGO-> Ag的特殊电子转移途径,抑制了Ag3PO4的光腐蚀和电子-空穴对的复合。这项工作表明,用贵金属纳米晶体装饰的半导体和石墨烯的合理组合可以为合成高效异质结构光催化剂提供一种通用策略。

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