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首页> 外文期刊>New Journal of Chemistry >A novel Ag deposited nanocoordination polymer derived porous SnO2/NiO heteronanostructure for the enhanced photocatalytic reduction of Cr(VI) under visible light
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A novel Ag deposited nanocoordination polymer derived porous SnO2/NiO heteronanostructure for the enhanced photocatalytic reduction of Cr(VI) under visible light

机译:一种新型的Ag沉积纳米配位聚合物衍生的多孔SnO2 / NiO杂纳米结构,用于在可见光下增强光催化还原Cr(VI)

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摘要

The fabrication of a novel porous Ag deposited SnO2/NiO (Ag/SnO2/NiO) heteronanostructure for the photoreduction of toxic aqueous Cr(VI) to non-toxic Cr(III) is reported. The material is prepared by depositing metallic Ag nanoparticles into the SnO2/NiO heteronanostructure by the reduction of Ag+ under UV irradiation. The SnO2/NiO heteronanostructure is obtained by a facile solid-state transformation of the novel nanocoordination polymer (NCP). The prepared Ag/SnO2/NiO is characterized by different techniques such as PXRD, XPS, EDX, FESEM, TEM, HRTEM, BET, UV-Vis DRS and PL measurements. The PXRD and XPS studies confirm the formation of a Sn(IV) state of SnO2 in the heterostructure. TEM images reveal the spherical morphology of Ag nanoparticles with an average particle size of 15 nm, and hexagonal shaped SnO2 and NiO with an average particle size of 10 and 5 nm in Ag/SnO2/NiO, respectively. The incorporation of Ag enhances visible light absorption and higher electron-hole separation of Ag/SnO2/NiO by Surface Plasmon Resonance (SPR). Besides, the material exhibits a high surface area and porous nature, which facilitates the effective photocatalytic reduction of toxic aqueous Cr(VI) to non-toxic Cr(III) under visible light. Furthermore, the photocatalytic reduction of Cr(VI) is optimized under different conditions. The photostability of Ag/SnO2/NiO is tested up to five successive runs indicating its promising applications for wastewater treatment. Finally, a photocatalytic mechanism is proposed for the reduction of aqueous Cr(VI) over Ag/SnO2/NiO under visible light.
机译:报道了新颖的多孔Ag沉积的SnO 2 / NiO(Ag / SnO 2 / NiO)异纳米结构的制备,该结构用于将有毒的Cr(VI)水溶液光还原为无毒的Cr(III)。通过在紫外线照射下通过还原Ag +将金属Ag纳米颗粒沉积到SnO2 / NiO异质纳米结构中来制备该材料。 SnO2 / NiO杂纳米结构是通过新型纳米配位聚合物(NCP)的轻松固态转化获得的。制备的Ag / SnO2 / NiO通过不同的技术进行表征,例如PXRD,XPS,EDX,FESEM,TEM,HRTEM,BET,UV-Vis DRS和PL测量。 PXRD和XPS研究证实了异质结构中SnO2的Sn(IV)状态的形成。 TEM图像揭示了平均粒径为15 nm的Ag纳米颗粒的球形形态,以及在Ag / SnO2 / NiO中平均粒径为10和5 nm的六边形SnO2和NiO。 Ag的掺入通过表面等离子体共振(SPR)增强了Ag / SnO2 / NiO的可见光吸收和更高的电子-空穴分离。此外,该材料具有高的表面积和多孔性,这有助于在可见光下将有毒的Cr(VI)水溶液有效地光催化还原成无毒的Cr(III)。此外,在不同条件下优化了Cr(VI)的光催化还原。对Ag / SnO2 / NiO的光稳定性进行了多达五次连续测试,表明其在废水处理中的应用前景广阔。最后,提出了在可见光下通过Ag / SnO2 / NiO还原Cr(VI)水溶液的光催化机理。

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