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Self-assembled macro porous ZnS-graphene aerogels for photocatalytic degradation of contaminants in water

机译:自组装宏观多孔ZnS-石墨烯Aerogels用于水中污染物的光催化降解

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A facile, green protocol for the synthesis of self-assembled 3D porous ZnS-graphene aerogels (ZnS-GAs) using vitamin-C to obtain a 3D network of supramolecular hybrid nanostructured materials was developed. Structural, morphological, and optical measurements demonstrate that the ZnS-GAs nanostructures have good crystallinity, and the graphene nanosheets are densely decorated by ZnS nanostructures. The photocatalytic properties of ZnS-GAs were assessed based on photocatalytic degradation of methylene blue (MB) and Cr(VI) under simulated sunlight irradiation. Superior photocatalytic performance was achieved with the ZnS-GAs compared to bare ZnS. This enhancement is ascribed to efficient charge transfer from ZnS to the graphene sheets. Overall, the present work provides new insight into the green synthesis of 3D ZnS-GAs, and the developed composites are highly active photocatalysts with stable cycling that can be exploited in environmentally friendly applications.
机译:开发了一种用于合成自组装3D多孔ZnS-石墨烯Aerogels(ZnS-气)的容易的绿色方案,使用维生素-c获得超分子混合纳米结构材料的3D网络。 结构,形态学和光学测量表明ZnS-气体纳米结构具有良好的结晶度,并且石墨烯纳米晶片由ZnS纳米结构装饰致密地装饰。 基于模拟阳光照射下的光催化降解亚甲基蓝(MB)和Cr(VI)的光催化降解来评估ZnS气的光催化性能。 与裸ZnS相比,通过ZnS - 气体实现了卓越的光催化性能。 这种增强符合从Zns到石墨烯片的有效电荷转移。 总的来说,本作新的洞察力对3D ZnS - 气体的绿色合成,并且开发的复合材料是高度活性的光催化剂,具有稳定的循环,可在环保应用中进行利用。

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