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Ternary Au/ZnO/rGO nanocomposites electrodes for high performance electrochemical storage devices

机译:用于高性能电化学存储设备的三元Au / ZnO / rGO纳米复合电极

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The combination of metal and metal oxide nanoparticles with reduced graphene oxides (rGO) is an active electrode material for electrochemical storage devices. Herein, we have, for the first time, reported the fabrication of ternary Au/ZnO/rGO nanocomposites by using a rapid and environmentally friendly microwave-assisted hydrothermal method for high performance supercapacitor applications. The ZnO/rGO provides excellent electrical conductivity and good macro/mesopore structures, which can facilitate the rapid electrons and ions transport. The Au nanoparticles with particle sizes of 7-12 nm are homogeneously distributed onto the ZnO/rGO surface to enhance the electrochemical performance by retaining the capacitance at high current density. The Au/ZnO/rGO nanocomposites, prepared with the optimized rGO amount of 100 mg exhibit a high specific capacitance of 875 and 424 F g(-1) at current densities of 1 and 20 A g-1, respectively, in 2 M KOH. In addition, the energy and power densities of ternary Au/ZnO/rGO can be up to 17.6-36.5 Wh kg(-1) and 0.27-5.42 kW kg(-1), respectively. Results obtained in this study clearly demonstrate the excellence of ternary Au/ZnO/rGO nanocomposites as the active electrode materials for electrochemical pseudocapacitor performance and can open an avenue to fabricate metal/metal oxide/rGO nanocomposites for electrochemical storage devices with both high energy and power densities. (C) 2017 Elsevier B.V. All rights reserved.
机译:金属和金属氧化物纳米粒子与还原氧化石墨烯(rGO)的组合是用于电化学存储设备的活性电极材料。本文中,我们首次报道了通过使用快速环保的微波辅助水热方法在高性能超级电容器应用中制备三元Au / ZnO / rGO纳米复合材料。 ZnO / rGO具有出色的电导率和良好的大孔/中孔结构,可以促进电子和离子的快速传输。粒径为7-12 nm的Au纳米颗粒均匀分布在ZnO / rGO表面上,通过在高电流密度下保持电容来增强电化学性能。在2 M KOH中分别以1和20 A g-1的电流密度,以100 mg的最佳rGO量制备的Au / ZnO / rGO纳米复合材料表现出875和424 F g(-1)的高比电容。 。此外,三元Au / ZnO / rGO的能量和功率密度分别可以达到17.6-36.5 Wh kg(-1)和0.27-5.42 kW kg(-1)。这项研究获得的结果清楚地证明了三元Au / ZnO / rGO纳米复合材料作为用于电化学伪电容器性能的活性电极材料的卓越表现,可以为制造高能量和功率的电化学存储设备的金属/金属氧化物/ rGO纳米复合材料开辟道路。密度。 (C)2017 Elsevier B.V.保留所有权利。

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