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A facile approach of fabricating graphene-encapsulated ZnO microspheres and their synergic effect on photocatalytic performance

机译:一种制备石墨烯包裹的ZnO微球的简便方法及其对光催化性能的协同作用

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摘要

A facile approach of fabricating homogeneous graphene (GE)-encapsulated ZnO microspheres (ZnO microspheres@GE) by bubbling, sonicating, freeze drying, and reduction is developed. The transmission electron microscopy results reveal an intimate interface between GE and ZnO. The as-synthesized ZnO microspheres@GE composites exhibit much higher adsorption capability and excellent photocatalytic activity for methylene blue compared with bare ZnO microspheres, which should be attributed to improved carrier transport efficiency and large surface area arising from the graphene encapsulating. Besides of that, due to the characters of non-functionalized and easy reproducibility, it should be extended to synthesis of GE-encapsulated other semiconductors as well.
机译:开发了一种通过鼓泡,超声处理,冷冻干燥和还原来制造均质石墨烯(GE)包裹的ZnO微球(ZnO microspheres @ GE)的简便方法。透射电子显微镜结果显示GE和ZnO之间有紧密的界面。与裸露的ZnO微球相比,合成后的ZnO微球@GE复合材料具有更高的吸附能力和对亚甲基蓝的优异光催化活性,这应归因于提高的载流子传输效率和石墨烯封装带来的大表面积。除此之外,由于具有非功能化和易复制的特点,它也应扩展到GE封装的其他半导体的合成。

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