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首页> 外文期刊>ChemElectroChem >One-Step Synthesis of Vacancy-Rich MnO2-x/Reduced Graphene Oxide Composite Film for High Electrochemical Performance
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One-Step Synthesis of Vacancy-Rich MnO2-x/Reduced Graphene Oxide Composite Film for High Electrochemical Performance

机译:用于高电化学性能的高富含石墨烯氧化物复合膜的空位富含空位的MNO2-X /氧化烯氧化物复合膜的一步合成

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摘要

High electrochemical performance is important to achieve practical application of energy storage devices. It has been found recently that it is hard to achieve high capacity and high stability simultaneously using a single electrode material. Thus, constructing composite electrode materials which can combine the advantages of different materials together is an efficient approach to improve the electrochemical properties. In this work, we have built a vacancy-rich MnO2-x/reduced graphene oxide (rGO) composite film through a facile one-step route. In the synthesis process, GO nanosheets were reduced into rGO to improve the electronic conductivity, while Mn2+ was oxidized to MnO2 with vacancies. The obtained vacancy-rich MnO2-x/rGO composite showed a superior electrochemical performance: The specific capacitance reached 675.5 F/g at a current density of 0.5 A/g and the material demonstrated high capacitance retention (96.1 % after 10000 cycles). Besides, the symmetric electrochemical capacitor based on the vacancy-rich MnO2-x/rGO composite electrode can achieve a high energy density (8.42 mWh/cm(3)) and power density (3.78 W/cm(3)) as well as excellent stability.
机译:高电化学性能对于实现能量存储装置的实际应用是重要的。最近已经发现,使用单个电极材料难以实现高容量和高稳定性。因此,构建可以将不同材料的优点结合在一起的复合电极材料是改善电化学性质的有效方法。在这项工作中,我们通过容易的一步途径构建了一种富含空位的MnO2-X /脱脂氧化物(RGO)复合膜。在合成过程中,将纳米片减少到RGO中以提高电子电导率,而MN2 +被氧化成带有空位的MNO2。所获得的空位的富含MnO2-X / RGO复合材料显示出优异的电化学性能:在电流密度为0.5A / g的特定电容达到675.5 f / g,并且该材料显示出高电容保留(10000次循环后96.1%)。此外,基于空位的MNO2-X / RGO复合电极的对称电化学电容器可以实现高能量密度(8.42mWh / cm(3))和功率密度(3.78W / cm(3))以及优异的稳定。

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