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Microwave-assisted synthesis of Mn3 O4 nanoparticles@reduced graphene oxide nanocomposites for high performance supercapacitors

机译:微波辅助合成Mn3 O4纳米粒子@还原型氧化石墨烯纳米复合材料用于高性能超级电容器

摘要

One-step microwave-assisted synthetic route for the fabrication of Mn3O4 nanoparticles@reduced graphene oxide (Mn3O4@rGO) nanocomposites has been demonstrated. The morphological structures of the nanocomposites are characterized by Fourier transform infrared spectroscopy (FT-IR), Raman spectroscopy, X-ray diffraction (XRD), thermogravimetric analyses (TGA), and scanning electron microscopy (SEM), respectively. All of the results indicate that the microwave-assisted synthesis results in the growth of Mn3O4 and the reduction of graphene oxide simultaneously in ethylene glycol-water system. The specific capacitance of the as-prepared Mn3O4@rGO nanocomposite is higher than those of rGO and pure Mn3O4, which indicates the synergetic interaction between rGO and Mn3O4. The nanocomposites also have good rate capability and cycling stability in electrochemical experiments. This facile technique may be extended to the large scale and cost effective production of other composites based on graphene and metal oxide for many applications.
机译:已经证明了一步法微波辅助合成路线可用于制备Mn3O4纳米颗粒@还原氧化石墨烯(Mn3O4 @ rGO)纳米复合材料。纳米复合材料的形态结构分别通过傅立叶变换红外光谱(FT-IR),拉曼光谱,X射线衍射(XRD),热重分析(TGA)和扫描电子显微镜(SEM)表征。所有结果表明,在乙二醇-水体系中,微波辅助合成同时导致Mn3O4的生长和氧化石墨烯的还原。制备的Mn3O4 @ rGO纳米复合材料的比电容高于rGO和纯Mn3O4的比电容,这表明rGO与Mn3O4之间具有协同作用。在电化学实验中,纳米复合材料还具有良好的速率能力和循环稳定性。这种简便的技术可以扩展到大规模,低成本地生产基于石墨烯和金属氧化物的其他复合材料的许多应用。

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