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首页> 外文期刊>Catalysis Today >Large-scale pattern fabrication of 3D rGO-Ag@Ag3PO4 hydrogel composite photocatalyst with the excellent synergistic effect of adsorption and photocatalysis degradation
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Large-scale pattern fabrication of 3D rGO-Ag@Ag3PO4 hydrogel composite photocatalyst with the excellent synergistic effect of adsorption and photocatalysis degradation

机译:3D RGO-AG @ Ag3PO4水凝胶复合光催化剂的大规模模式制备具有优异的吸附和光催化降解的协同效应

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摘要

A novel visible-light driven 3D porous network structure rGO-Ag@Ag3PO4 (RAA) hydrogel composite photocatalyst with a synergistic effect of adsorption enrichment and photocatalysis degradation has been synthesized by a facile method and characterized by XRD, SEM, TEM, EDS, FTIR, DRS, UV-vis, TG, Raman, and XPS. RAA hydrogel photocatalyst with 3D porous network structure is not only favorable to increasing the absorption property for organic pollutants owing to a larger surface area and pi-pi conjunction property, but also promotes the separation and transformation of electron-hole pairs due to the good conductivity performance. The RAA hydrogel composite photocatalyst has exhibited the excellent removal capacity of organic pollutants which were about 1.94 and 1.10 times higher than those of bare Ag3PO4 for the removal of MB and 2, 4-CDP in the dynamic system, respectively. The enhancement of removal efficiency was due to a synergistic effect of adsorption enrichment and photocatalysis degradation. The removal rate of RAA hydrogel composite photocatalyst has only a little decrease from 76.04% to 68.51% for 60 h of the photoreaction, showing the relatively good stability. The trapping experiment and ESR showed the main active species were holes.
机译:一种新的可见光驱动3D多孔网络结构RGO-Ag @ Ag3PO4(RAA)水凝胶复合光催化剂,具有协同效应的吸附性富集和光催化降解已经通过容易方法合成,并通过XRD,SEM,TEM,EDS,FTIR来表征,DRS,UV-VI,TG,拉曼和XPS。带有3D多孔网络结构的Raa水凝胶光催化剂不仅有利于增加有机污染物的吸收性,而且由于较大的表面积和PI-PI结合性,而且还促进了由于良好的导电性引起的电子孔对的分离和转化表现。 RAA水凝胶复合光催化剂表现出优异的有机污染物的去除能力,其比裸均值为约1.94和1.10倍,以分别用于去除动态系统中的MB和2,4-CDP的裸均值。去除效率的增强是由于吸附富集和光催化降解的协同效应。 RAA水凝胶复合光催化剂的去除率仅为60小时的光反应略微降低至68.51%,显示出相对良好的稳定性。诱捕实验和ESR显示主要活性物种是孔。

著录项

  • 来源
    《Catalysis Today》 |2020年第1期|共10页
  • 作者单位

    China Univ Geosci Sch Sci Xueyuan Rd Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Key Lab Mat Utilizat Nonmetall Minerals &

    Sch Mat Sci &

    Technol Natl Lab Mineral Mat Xueyuan Rd Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Key Lab Mat Utilizat Nonmetall Minerals &

    Sch Mat Sci &

    Technol Natl Lab Mineral Mat Xueyuan Rd Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Key Lab Mat Utilizat Nonmetall Minerals &

    Sch Mat Sci &

    Technol Natl Lab Mineral Mat Xueyuan Rd Beijing 100083 Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Jiangsu Collaborat Innovat Ctr Atmospher Environm Jiangsu Key Lab Atmospher Environm Monitoring &

    P Nanjing 210044 Peoples R China;

    China Univ Geosci Beijing Key Lab Mat Utilizat Nonmetall Minerals &

    Sch Mat Sci &

    Technol Natl Lab Mineral Mat Xueyuan Rd Beijing 100083 Peoples R China;

    China Univ Geosci Sch Sci Xueyuan Rd Beijing 100083 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学动力学、催化作用;催化反应过程;
  • 关键词

    Graphene hydrogel; Synergetic effect; Photocatalysis; 3D network structure; Absorption;

    机译:石墨烯水凝胶;协同作用;光催化;3D网络结构;吸收;

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