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Furfural-Induced Hydrothermal Synthesis of ZnO@C Gemel Hexagonal Microrods with Enhanced Photocatalytic Activity and Stability

机译:糠醛水热法合成具有增强的光催化活性和稳定性的ZnO @ C Gemel六角形微棒

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摘要

Here we report the synthesis of ZnO@C coaxial gemel hexagonal microrods with a thin hydrothermal carbon (HTC) layer on their surface by a facile one-step hydrothermal method with furfural as the carbon precursor. The furfural has a unique dual role, which not only induces the nucleation of ZnO in the initial stage of hydrothermal process, but also forms a thin HTC layer deposited on the ZnO surface. The thickness of the surface HTC layer increases with the hydrothermal time until 16 h under the conditions adopted in the present study. It has been found that the HTC layer has resulted in a significant improvement in the photocatalytic activities and photostabilities of the ZnO@C microrods for the UV-irradiated photodegradation of methylene blue solution. The mechanism involved in the process is proposed and discussed in terms of the photodegradation scheme and the properties of the ZnO@C microrods.
机译:在这里,我们报告了通过糠醛作为碳前体的简便一步水热法合成表面具有薄薄热液碳(HTC)层的ZnO @ C同轴宝石六角形微棒。糠醛具有独特的双重作用,它不仅在水热过程的初始阶段诱导ZnO成核,而且在ZnO表面形成一层薄的HTC层。在本研究采用的条件下,表面HTC层的厚度随着水热时间的增加而增加,直到16 h。已经发现,HTC层显着改善了ZnO @ C微棒对亚甲基蓝溶液的UV辐照光降解的光催化活性和光稳定性。根据光降解方案和ZnO @ C微棒的性质,提出并讨论了该过程涉及的机理。

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