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Synthesis of Nitrogen-Doped ZnS with Camellia Brushfield Yellow Nanostructures for Enhanced Photocatalytic Activity under Visible Light Irradiation

机译:用山茶花晶型黄色纳米结构合成氮掺杂ZnS,可见光照射下的光催化活性

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摘要

Nitrogen modified zinc sulfide photocatalysts were successfully prepared and characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), high-resolution transmission electron microscopy (HR-TEM), X-ray photoelectron spectroscopy (XPS), and surface area analysis. Thermal decomposition of the semisolid was carried out under nitrogen conditions at 500°C for 2 hours, and a series of nitrogen-doped ZnS photocatalysts were produced by controlling inflow flow rate of nitrogen at 15–140 mL/min. Optical characterizations of the synthesized N-doping ZnS substantially show the shifted photoabsorption properties from ultraviolet (UV) region to visible light. The band gaps of nitrogen-doped ZnS composite catalysts were calculated to be in the range of 2.58~2.74 eV from the absorptions edge position. The 15N/ZnS catalyst shows the highest photocatalytic activity, which results in 75.7% degradation of Orange II dye in 5 hrs by visible light irradiation, compared with pristine ZnS and higher percentage N-doping ZnS photocatalysts.
机译:通过X射线衍射(XRD),现场发射扫描电子显微镜(Fe-SEM),高分辨率透射电子显微镜(HR-TEM),X射线光电子体光谱(XPS)成功制备氮化锌光催化剂并表征了氮化锌光催化剂。和表面积分析。在氮气条件下在500℃下进行半固体的热分解2小时,通过控制15-140ml / min的氮气流量流动,产生一系列氮掺杂的ZnS光催化剂。合成的N掺杂ZnS的光学表征基本上显示出来自紫外(UV)区域的移位的光吸收性能至可见光。计算氮掺杂ZnS复合催化剂的带间隙以从吸收边缘位置的2.58〜2.74eV的范围内。 15N / ZnS催化剂显示出最高的光催化活性,通过可见光照射导致5小时内的橙色II染料降解橙色II染料,与原始ZnS和更高的N掺杂ZnS光催化剂相比。

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