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Mesoporous ferriferrous oxide nanoreactors modified on graphitic carbon nitride towards improvement of physical, photoelectrochemical properties and photocatalytic performance

机译:在石墨碳氮化物上改性物理,光电化学性质和光催化性能的介孔含铁氧化物纳米反应器

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It is difficult for controlling the micro/nanostructures of composite unit on the surface of two-dimensional (2D) materials to fabricate the new high-efficiency photocatalysts. The mes-Fe3O4/g-C3N4 composite is fabricated by the modification of mesoporous Fe3O4 (mes-Fe3O4) nanospheres on the surface of 2D graphitic carbon nitride (g-C3N4) nanosheets. The mes-Fe3O4 nanospheres as the natural nanoreactors enlarge the specific surface area to increase reaction active sites, as well as provide the confined space to accelerate degradation reaction. Meanwhile, the physical and photoelectrochemical properties of mes-Fe3O4/g-C3N4 composite are distinctly improved owing to the electron collection effect of mes-Fe3O4 nanoreactors. The mes-Fe3O4/g-C3N4 composites exhibit the improved degradation performance for removing tetracycline hydrochloride (TC-HCl) relative to single g-C3N4. Moreover, the possible intermediate product and photocatalytic reaction mechanism are revealed in depth. This work gives a new guidance for the controlled fabrication of mesoporous nanoreactors on the surface of 2D materials. (C) 2018 Elsevier Inc. All rights reserved.
机译:难以控制二维(2D)材料表面上的复合单元的微/纳米结构,以制造新的高效光催化剂。 MES-Fe3O4 / G-C3N4复合材料通过在2D石墨碳氮化物(G-C3N4)纳米晶片表面上的介孔Fe3O4(MES-Fe3O4)纳米球体的改性来制造。作为天然纳米反应器的MES-Fe3O4纳米球扩大了比表面积增加,以增加反应活性位点,以及提供狭窄的空间以加速降解反应。同时,由于MES-Fe3O4纳米反应器的电子收集效果,MES-Fe3O4 / G-C3N4复合材料的物理和光电化学性质明显改善。 MES-Fe3O4 / G-C3N4复合材料表现出相对于单G-C3N4去除四环素盐酸盐(TC-HCl)的改善的降解性能。此外,可能的中间产物和光催化反应机理深入显示。该作品给出了在2D材料表面上受控制造的新引导。 (c)2018 Elsevier Inc.保留所有权利。

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