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首页> 外文期刊>ChemPlusChem >Ternary Hybrid Aerogels of g‐C 3 3 N 4 4 /α‐Fe 2 2 O 3 3 on a 3D Graphene Network: An Efficient and Recyclable Z‐Scheme Photocatalyst
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Ternary Hybrid Aerogels of g‐C 3 3 N 4 4 /α‐Fe 2 2 O 3 3 on a 3D Graphene Network: An Efficient and Recyclable Z‐Scheme Photocatalyst

机译:G-C 3 3 N 4 4 /α-Fe 2 2 O 3 3在3D石墨网上的三元杂化气凝胶:高效和可回收的Z方案光催化剂

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Abstract A Z‐scheme graphitic carbon nitride (g‐C 3 N 4 )/α‐Fe 2 O 3 has been incorporated into a three‐dimensional porous graphene aerogel. Graphene aerogels are a promising framework in their use for practical photocatalysis by abundant reaction sites, efficient mass transport of reactants and recyclability through their free‐standing framework. At the same time, Z‐scheme charge transfer among g‐C 3 N 4 , α‐Fe 2 O 3 , and conductive graphene inhibits the rapid recombination of the photoinduced electrons and holes. Ternary g‐C 3 N4/α‐Fe 2 O 3 /graphene aerogels (CNFGA) showed significantly enhanced photocatalytic activity which demonstrated 4.75 times greater methylene blue degradation and 17.5 times higher photocurrent density than those of exfoliated g‐C 3 N 4 under visible light. In addition, CNFGA exhibited a robust photostability with a simple recovery method while showing only a ca.?2?% decrease in photocatalytic performance after five cycles. These results suggest that this ternary Z‐scheme photocatalyst based on a graphene aerogel has potential use in practical photocatalysis for various environmental applications.
机译:摘要Z-Scheme Straphic碳氮(G-C 3 N 4)/α-Fe 2 O 3已被掺入三维多孔石墨烯气凝胶中。石墨烯Aerogels是一种有前途的框架,其用于通过丰富的反应位点,高效地传输反应物和通过独立框架的可回收性的高效传输。同时,G-C 3 N 4,α-Fe 2 O 3之间的Z方案电荷转移和导电石墨烯抑制了光诱导的电子和孔的快速重组。三元G-C 3 N4 /α-Fe 2 O 3 /石墨烯Aerogels(CNFGA)显示出显着增强的光催化活性,其甲基蓝色降解较高的4.75倍,光电流密度较高的比例较高的光电密度在可见下的剥离G-C 3 N 4较高光。此外,CNFGA以简单的恢复方法表现出坚固的光稳定性,同时仅显示CA.?2?%在五个循环后的光催化性能下降。这些结果表明,基于石墨烯气体的三元Z方案光催化剂对各种环境应用的实际光催化具有潜在的应用。

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