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Photocatalytic and electrochemical performance of three-Dimensional reduced graphene Oxide/WS2/Mg-doped ZnO composites

机译:三维还原氧化石墨烯/ WS2 / Mg掺杂ZnO复合材料的光催化和电化学性能

摘要

To improve the dispersion of reduced graphene oxide and enhance the photocatalytic property of reduced graphene oxide/Mg-doped ZnO composites (rGMZ), the reduced graphene oxide/WS2/Mg-doped ZnO composites (rGWMZ) were prepared by electrostatic self-assembly and coprecipitation methods. The effects of mass ratio of WS2 nanosheets to reduced graphene oxide (WS2/rGO wt.%) and calcination temperature on the photocatalytic and electrochemical property of rGWMZ composites were investigated. Experimental results showed that the photocatalytic efficiency of rGWMZ composites is three-fold compared with that of rGMZ composites when the WS2/rGO wt.% is 20.8% and calcination temperature is 500 °C, in which the degradation ratio Rhodamin B (RhB) can reach 95% within 15 min under the UV light and 90% within 90 min under simulated solar light. In addition, the rGWMZ show larger capacitance and smaller resistance than rGMZ. The enhancement for photocatalytic activity and electrochemical performance of rGWMZ is ascribed to improving the specific surface area, electrical conductivity and electronic storage capability because of the synergistic effect of rGO and WS2 nanosheets.
机译:为了提高还原石墨烯/ Mg掺杂的ZnO复合材料(rGMZ)的分散性并增强其光催化性能,通过静电自组装制备了还原石墨烯/ WS2 / Mg掺杂的ZnO复合材料(rGWMZ)。共沉淀方法。研究了WS2纳米片与还原氧化石墨烯的质量比(WS2 / rGO wt。%)和煅烧温度对rGWMZ复合材料光催化和电化学性能的影响。实验结果表明,当WS2 / rGO的重量百分比为20.8%且煅烧温度为500°C时,rGWMZ复合材料的光催化效率是rGMZ复合材料的三倍,其中Rhodamin B(RhB)可以降解。在紫外线下15分钟内达到95%,在模拟太阳光下90分钟内达到90%。另外,与rGMZ相比,rGWMZ具有更大的电容和更小的电阻。 rGWMZ的光催化活性和电化学性能的增强归因于rGO和WS2纳米片的协同效应,从而提高了比表面积,电导率和电子存储能力。

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