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首页> 外文期刊>Electrochimica Acta >High reversibility of Li intercalation and de-intercalation in MnO-attached graphene anodes for Li-ion batteries
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High reversibility of Li intercalation and de-intercalation in MnO-attached graphene anodes for Li-ion batteries

机译:Li离子电池中的MnO-连接石墨烯阳极中Li插入和去嵌入的高可逆性

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摘要

A composite of graphene nanosheets (GNs) supported by MnO nanocrystals has been fabricated through a simple chemical-wet impregnation followed by the thermal reduction route. The hybrid contains MnO nanoparticles with an average size of 20 nm uniformly dispersed on GNs as observed by transmission electron microscopy and X-ray diffraction analysis. The MnO-attached GN anode delivers a reversible capacity of 635 mAh/g at 0.2 C in the voltage range between 0.01 and 3.5 V. The MnO doping in the GN network plays a positive role in improving the Coulombic efficiency (92.7%) at the 1st cycle and rate capability (capacity retention (5 C/0.2 C): >70%). The superior cell performance of the GN anodes is ascribed to its unique framework, which intimately combines the conductive GNs with well-dispersed MnO nanoparticles. This present work sheds some light on the feasibility of the MnO-attached GN anodes for high-performance Li-ion batteries.
机译:通过简单的化学湿浸渍,通过简单的化学湿浸渍,通过简单的化学湿润浸渍来制造石墨烯纳米片(GNS)的复合物。 杂交液含有平均尺寸为20nm的MnO纳米颗粒,其均匀地分散在GNS上,如通过透射电子显微镜和X射线衍射分析所观察到的。 连接的GN阳极在0.01和3.5V的电压范围内以0.2℃提供635mAh / g的可逆容量.GN网络中的MNO掺杂在提高库仑效率(92.7%)时起着积极作用 第一周期和速率能力(容量保留(5 c / 0.2 c):> 70%)。 GN阳极的优异电池性能归因于其独特的框架,其将导电GN与分散良好分散的MNO纳米颗粒相结合。 该目前的工作揭示了用于高性能锂离子电池的MNO附着的GN阳极的可行性。

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