首页> 外文期刊>Materials Research Bulletin >Construction of 2D all-solid-state Z-scheme g-C_3N_4/BiOI/RGO hybrid structure immobilized on Ni foam for CO_2 reduction and pollutant degradation
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Construction of 2D all-solid-state Z-scheme g-C_3N_4/BiOI/RGO hybrid structure immobilized on Ni foam for CO_2 reduction and pollutant degradation

机译:固定在Ni泡沫上的二维全固态Z方案g-C_3N_4 / BiOI / RGO混合结构的构建,用于CO_2还原和污染物降解

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In this work, a special hybrid structure with 2D configuration comprising of g-C3N4, reduced graphene oxide (RGO), and BiOI (g-C3N4/BiOI/RGO) was rationally constructed and immobilized on Ni foam with RGO functioned as electron transfer mediator and binder. The immobilized 2D g-C3N4/BiOI/RGO hybrid structure exhibited the enhanced photocatalytic CO2 reduction to CO and the methyl orange (MO) degradation efficiency under visible light irradiation. Particularly, the hybrid heterojunction with a mass ratio 6% of BiOI to g-C3N4 displayed the highest CO yield and degradation rate constant for MO, which was 1.6 times and 3 times of g-C3N4/RGO binary heterojunction immobilized on Ni foam. The enhanced photocatalytic activity was ascribed to the rapid charge separation. More importantly, combined with the theoretical calculations on the work functions of g-C3N4, rGO and BiOI, the experimental results clarified the charges transfer route of g-C3N4/BiOI/RGO heterojunction conforming to the Z-scheme mechanism.
机译:在这项工作中,由g-C3N4,还原氧化石墨烯(RGO)和BiOI(g-C3N4 / BiOI / RGO)组成的具有2D构型的特殊混合结构被合理地构建并固定在具有RGO充当电子传递介质的镍泡沫上和粘合剂。固定化的2D g-C3N4 / BiOI / RGO杂化结构在可见光照射下表现出增强的光催化CO2还原成CO的能力和甲基橙(MO)的降解效率。特别是,BiOI与g-C3N4的质量比为6%的杂化异质结表现出最高的CO产率和MO的降解速率常数,是固定在Ni泡沫上的g-C3N4 / RGO二元异质结的1.6倍和3倍。增强的光催化活性归因于快速电荷分离。更重要的是,结合对g-C3N4,rGO和BiOI的功函数的理论计算,实验结果阐明了g-C3N4 / BiOI / RGO异质结的电荷转移路径符合Z方案机理。

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