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A facile one-pot route for the controllable growth of small sized and well-dispersed ZnO particles on GO-derived graphene

机译:一种简便的一锅法,可控制GO衍生石墨烯上小尺寸且分散良好的ZnO颗粒的生长

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In this study, we reported the growth of well dispersed ZnO nanoparticles with small size of about 10 nm on GO-derived graphene via a facile solvothermal method, in which the Zn-EG-Ac complex, graphitic oxide (GO) and ethanol were selected as the Zn precursor, graphene precursor and solvent respectively. The Zn-EG-Ac with plenty of functional groups can interact with the functional groups (COOH, OH) on GO, and thus transform in situ on GO into well-dispersed ZnO without the need of additional alkali. Besides, as solvent, the ethanol also plays the role of a reducing agent that could reduce GO to GO-derived graphene under solvothermal conditions, excluding the use of additional reducing agents. The results indicated that the Zn-EG-Ac precursor was crucial for the formation of the small-sized and well-dispersed ZnO on graphene. Replacing the Zn-EG-Ac complex with Zn(Ac)2, free ZnO with large size (up to μm) could be observed. In addition, other parameters, such as the amount of the reagent and the kind of solvent, also played an important role in determining the micro-structure of the final composites. It needs to be mentioned that we have found the existence of a strong interaction between ZnO and the graphene substrate based on the results of XPS measurements. The interaction was important for improving the performance of the composite; typically, the photocatalytic performance as shown by the photocatalytic degradation of organic pollutants. Overall, our work provides a new avenue for fabricating a ZnO/graphene composite in terms of its simplicity, small size and the good dispersion of ZnO on the graphene, as well as its good performance for photocatalysis applications.
机译:在这项研究中,我们报告了通过一种便捷的溶剂热方法,在GO衍生的石墨烯上生长了约10 nm的小尺寸,分散良好的ZnO纳米颗粒,其中选择了Zn-EG-Ac络合物,氧化石墨(GO)和乙醇作为锌前体,分别为石墨烯前体和溶剂。具有大量官能团的Zn-EG-Ac可以与GO上的官能团(COOH,OH)相互作用,从而在GO上原位转化为分散良好的ZnO,而无需额外的碱。此外,作为溶剂,乙醇还起着还原剂的作用,该溶剂可以在溶剂热条件下将GO还原为GO衍生的石墨烯,而无需使用其他还原剂。结果表明,Zn-EG-Ac前体对于在石墨烯上形成小尺寸且分散良好的ZnO至关重要。用Zn(Ac)2取代Zn-EG-Ac复合物,可以观察到大尺寸(最大为μm)的游离ZnO。此外,其他参数(例如试剂的量和溶剂的种类)在确定最终复合材料的微观结构方面也起着重要作用。需要提及的是,基于XPS测量的结果,我们发现ZnO和石墨烯衬底之间存在强相互作用。相互作用对于提高复合材料的性能很重要。通常,光催化性能表现为有机污染物的光催化降解。总体而言,我们的工作为ZnO /石墨烯复合材料的简单,小尺寸和ZnO在石墨烯上的良好分散性以及其在光催化应用中的良好性能提供了一条新的途径。

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