首页> 外文期刊>Journal of Materials Research and Technology >Construction of mesoporous ZnFe 2O 4-g-C 3N 4 nanocomposites for enhanced photocatalytic degradation of acridine orange dye under visible light illumination adopting soft- and hard-template-assisted routines
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Construction of mesoporous ZnFe 2O 4-g-C 3N 4 nanocomposites for enhanced photocatalytic degradation of acridine orange dye under visible light illumination adopting soft- and hard-template-assisted routines

机译:中孔Znfe的构建 2 o 4 -gc 3 N 4 纳米复合材料,用于增强吖啶橙色染料在采用软和硬模板辅助常规下的吖啶橙色染料的光催化降解

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In this investigation, triblock copolymer surfactant (F-108) as a soft template and mesoporous silica (MCM-41) as a hard template were endorsed to establish mesoporous ZnFe2O4-g-C3N4nanocomposites of improved features. Photocatalytic remediation of acridine orange dye was endorsed to test the efficiency of the established nanocomposites when exposed to visible light. It has been affirmed by the surface characterization investigation that established nanocomposites acquired improved specific surface areas when correlated with the surface areas of both pure ZnFe2O4nanoparticles (NPs) and pure g-C3N4nanosheets. In addition, TEM analysis depicted that ZnFe2O4nanoparticles (NPs) are homogenously spread on the g-C3N4surface. Besides, synthesized ZnFe2O4-g-C3N4nanocomposite accommodating 3?wt.% ZnFe2O4NPs exhibited reinforced efficacy against photocatalytic decomposition of acridine orange dye when related to that of neat mesoporous ZnFe2O4NPs as well as that of g-C3N4nanosheets. Evidently, the photocatalytic remediation achievement of acridine orange acquired by 3?wt.% ZnFe2O4@g-C3N4nanocomposites was found to be 4.4 times the achievement acquired by neat mesoporous ZnFe2O4NPs. At the same time, it was 6.3 times the achievement acquired by neat g-C3N4nanosheets. The fast transference of the reactant molecules through the mesoporous texture, the suppressed rate of the photoinduced charges' recombination, the boosted separation between charges, the diminished band gap energy besides the extended surface area of the synthesized nanocomposites could be considered the most important considerations that contribute strongly to the superior photocatalytic achievement of the synthesized ZnFe2O4-g-C3N4nanocomposite towards photocatalytic remediation of acridine orange dye. Furthermore, the homogenous distribution of the small-sized ZnFe2O4NPs onto the nanosheets’ surface participated also the photocatalytic progression of the synthesized nanocomposites. The regenerated ZnFe2O4-g-C3N4nanocomposite exhibited extensive stability and durability even after recycling up to five runs.
机译:在该研究中,通过作为硬模板的软模板和介孔二氧化硅(MCM-41)作为硬模板的三嵌段共聚物表面活性剂(F-108)以建立改进特征的介孔ZnFe2O4-G-C3N4N4N4N4NAnoC复合物。在暴露于可见光时,核准吖啶橙色染料的光催化修复以测试已建立的纳米复合材料的效率。已经通过所建立的纳米复合材料在与纯ZnFe2O4Nanoplicle(NPS)和纯G-C3N4NNANOSOPELS相关的相关性纳米复合材料的表面表征研究中肯定了所建立的纳米复合材料。此外,所描绘的TEM分析描绘了ZnFe 2 O 4αα(NPS)在G-C3N4Surface上均匀地铺展。此外,合成的ZnFe2O4-G-C3N4NAnoC复合材料容纳3?重量%ZnFe2O4NPS在与整齐的中孔ZnFe2O4NPS以及G-C3N4NANOSOPEL的相关时表现出吖啶橙染料的光催化分解的增强效果。显然,吖啶橙的光催化修复含有3〜wt.%ZnFe2O4 @ G-C3N4NanoC复合材料是由整齐的介孔ZnFe2O4NP获得的4.4倍的成就。与此同时,通过整洁的G-C3N4NANOSOPELS获得的成就是6.3倍。反应物分子通过介孔纹理的快速转移,光抑制电荷重组的抑制率,电荷之间的增压分离,除了合成的纳米复合材料的延伸表面区域之外的减小的带隙能量可能被认为是最重要的考虑因素强烈促进了合成的ZnFe2O4-G-C3N4NANOC复合材料朝向光催化修复吖啶橙色染料的优质光催化成果。此外,小尺寸的ZnFe2O4nps对纳米片表面上的均匀分布也参与了合成纳米复合材料的光催化进展。再生ZnFe2O4-G-C3N4NanoC复合材料即使在再循环到五次次数后,也表现出广泛的稳定性和耐久性。

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