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Reduced Graphene Oxide - Zinc Sulfide Composite for Solar Light Responsive Photo Current Generation and Photocatalytic 4-Nitrophenol Reduction

机译:氧化石墨烯还原 - 硫化锌复合材料,用于太阳光响应照片电流的发电和光催化4-硝基苯酚还原

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摘要

Solution processable Reduced Graphene Oxide - Zinc Sulfide (RGO-ZnS) composite has been synthesized by a simple single step one-pot solvothermal route. As- synthesized composite was characterized structurally and optically. The photo induced charge generation of RGO-ZnS in solid phase as well as in solution phase has been investigated under simulated solar light illumination. RGO-ZnS thin film photo detector shows an excellent photocurrent generation with a high degree of reproducibility. The photosensitivity (ratio of photo to dark current) of the detector varies linearly with the light intensity, which is advantageous to tune the optoelectronic device performance and paves the way for its application. A remarkable increase of photoreduction efficiency of RGO-ZnS compare to controlled ZnS / controlled RGO towards the reduction of 4- Nitrophenol was observed.Here RGO plays a crucial role as solid state electron mediator to separate the photoexcited electron and holes and subsequently hinders the electron-hole pair recombination probability. Which consequently increases the photocurrent generation and photocatalytic activity of the composite.
机译:溶液可处理的还原石墨烯 - 氧化石墨烯 - 硫化锌(RGO-ZNS)复合材料已通过简单的单步单锅溶剂热路线合成。合成的复合材料在结构和光学上都是表征的。在模拟的太阳光照射下,已经研究了照片在固相和溶液相中诱导的RGO-ZN的电荷产生。 RGO-ZNS薄膜照片探测器显示出极好的光电流产生,具有高度的可重复性。检测器的光敏度(照片与暗电流的比率)随光强度线性变化,这是对光电设备性能调整并为其应用铺平道路的有益的。与受控的ZnS /受控RGO相比,RGO-ZN的光递减效率显着提高,观察到4-硝基苯酚的减少。在这里,RGO作为固态电子介质起着至关重要的作用,可以分离光泽的电子和孔,然后将电子孔与电子造成,从而使电子在电子中阻碍电子。 - 孔对重组概率。因此,这增加了复合材料的光电流产生和光催化活性。

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