ZnO、ZnO/ZnS和ZnO/ZnS/α-Fe2O3纳米复合材料的光致发光行为及可见光催化活性

来源期刊:中国有色金属学报(英文版)2018年第7期

论文作者:Gaurav HITKARI Sandhya SINGH Gajanan PANDEY

文章页码:1386 - 1396

关键词:纳米复合材料;ZnO;ZnS;α-Fe2O3;煅烧;光学性质;光催化活性

Key words:nanocomposite; ZnO; ZnS; α-Fe2O3; calcination; optical properties; photocatalytic activity

摘    要:为了获得用于染料甲基橙(MEO)降解的高效、经济、易得的光催化剂,采用简单的化学合成法在水溶液介质中制备ZnO、ZnO/ZnS和ZnO/ZnS/α-Fe2O3纳米复合材料。利用X射线衍射(XRD)和BET技术测定合成材料的物相、结晶度、表面结构和表面行为。X射线衍射结果表明,ZnO、ZnO/ZnS和ZnO/ZnS/α-Fe2O3纳米材料结晶良好。根据XRD谱中各峰的强度,确定纳米复合材料的组成。BET分析表明,所制备的材料具有介孔行为、IV型(吸附脱附)曲线和H4型迟滞现象。3种材料中,ZnO/ZnS/α-Fe2O3复合材料的比表面积最大。利用紫外-可见光谱分析,测定材料的带隙能,光致发光光谱(PL)则用来确定材料的发射行为和表面缺陷。在PL光谱中,ZnO/ZnS的紫外峰强度比ZnO的低,且ZnO/ZnS/α-Fe2O3的紫外峰强度更低。与ZnO相比,ZnO/ZnS的可见发射光谱强度增大,且ZnO/ZnS/α-Fe2O3的可见发射光谱强度比ZnO/ZnS的更大。所合成的材料被用作染料甲基橙降解的光催化剂。光降解数据表明,3种染料甲基橙降解的光催化剂中ZnO/ZnS/α-Fe2O3是最佳的。紫外光发射峰强度的降低和可见光发射强度的增大导致电子和空穴复合减少,因而使得ZnO/ZnS/α-Fe2O3具有最高的光催化活性。

Abstract: In order to achieve effective, economic, and easily achievable photocatalyst for the degradation of dye methyl orange (MeO), ZnO, ZnO/ZnS and ZnO/ZnS/α-Fe2O3 nanocomposites were prepared by simple chemical synthetic route in the aqueous medium. Phase, crystallinity, surface structure and surface behavior of the synthesized materials were determined by X-ray diffraction (XRD) and Brunauer-Emmett-Teller analysis (BET) techniques. XRD study established formation of good crystalline ZnO, ZnO/ZnS and ZnO/ZnS/α-Fe2O3 nanomaterials. By using intensity of constituent peaks in the XRD pattern, the compositions of nanocomposites were determined. From the BET analysis, the prepared materials show mesoporous behavior, type IV curves along with H4 hysteresis. The ZnO/ZnS/α-Fe2O3 composite shows the largest surface area among three materials. From the UV-visible spectra, the band gap energy of the materials was determined. Photoluminescence spectra (PL) were used to determine the emission behavior and surface defects in the materials. In PL spectra, the intensity of UV peak of ZnO/ZnS is lowered than that of ZnO while in case of ZnO/ZnS/α-Fe2O3, the intensity further decreased. The visible emission spectra of ZnO/ZnS increased compared with ZnO while in ZnO/ZnS/α-Fe2O3 it is further increased compared with ZnO/ZnS. The as-synthesized materials were used as photocatalysts for the degradation of dye MeO. The photo-degradation data revealed that the ZnO/ZnS/α-Fe2O3 is the best photocatalyst among three specimens for the degradation of dye MeO. The decrease of intensity of UV emission peak and the increase of intensity of visible emission cause the decrease of recombination of electrons and holes which are ultimately responsible for the highest photocatalytic activity of ZnO/ZnS/α-Fe2O3.

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