Visible-light-driven S-scheme mesoporous Ag3VO4 /C3N4 heterojunction with promoted photocatalytic performances

介孔材料 光催化 材料科学 纳米复合材料 异质结 可见光谱 化学工程 纳米颗粒 纳米技术 氧化还原 可重用性 催化作用 化学 有机化学 光电子学 计算机科学 工程类 冶金 程序设计语言 软件
作者
Hind Alshaikh,L.A. Al-Hajji,M.H.H. Mahmoud,Adel A. Ismail
出处
期刊:Separation and Purification Technology [Elsevier BV]
卷期号:272: 118914-118914 被引量:120
标识
DOI:10.1016/j.seppur.2021.118914
摘要

Abstract A facile and highly efficient mesoporous Ag3VO4/C3N4 heterojunction photocatalysts were synthesized by accommodating Ag3VO4 nanoparticles (NPs) onto the porous g-C3N4 nanosheets. The findings showed that mesoporous Ag3VO4 NPs uniformly disseminated onto the g-C3N4 with a small particle size (5 nm). Compared to pristine g-C3N4 and Ag3VO4 NPs, the mesoporous Ag3VO4/C3N4 photocatalysts displayed much higher photocatalytic Hg(II) reduction. It was found that among all the synthesized nanocomposites, the synthetic mesoporous 2.4%Ag3VO4/C3N4 photocatalyst indicated much better photoreduction performance. The Hg(II) reduction was completely achieved within 60 min (100%) through illumination by visible light, which was 4.3 and 5.4 fold larger photocatalytic performance than that Ag3VO4 NPs and g-C3N4, in that order. The enhancement Hg(II) reduction performance of mesoporous Ag3VO4/C3N4 photocatalysts could be explained by a synergetic effect of S-scheme heterojunction structure with high surface area and promotion light harvest, suggesting to efficacious of the photoinduced charges separation. The recycling performance of the nanocomposites exhibited superior stability, durability and reusability. S-scheme charge transfer route accomplished of mesoporous Ag3VO4/C3N4 with improved stronger redox ability and separation of photoinduced carriers. This research work clarifies an outstanding approach to promote a novel and facile S-scheme photocatalytic system to oxidize environmental contaminants and reduce toxic heavy metals.
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