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首页> 外文期刊>Journal of Reinforced Plastics and Composites >The electrochemical performance of carbon-aerogel-based nanocomposite anodes compound with graphites for lithium-ion cells
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The electrochemical performance of carbon-aerogel-based nanocomposite anodes compound with graphites for lithium-ion cells

机译:碳-气凝胶基纳米复合阳极化合物与石墨的锂离子电池电化学性能

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摘要

Carbon aerogels are nanostructure porous carbon materials that are derived via a sol-gel process with resorcinol and formaldehyde and subsequent pyrolysis of the precursor aerogels. Due to their high surface area, electrically conducting network, and chemical inertness, carbon aerogels can be considered ideal electrodes in rechargeable batteries. In this article, nanocomposite carbon anodes were prepared using carbon aerogels powders and graphite powders and the compound powders and binder, separately. With different carbon anodes and with lithium metal foil as the cathode, half-cells were made. Electrochemical measurements of the lithium intercalation properties for carbon aerogels were performed under high-purity argon in a glove box. The model cells showed that the initial charge capacity is 1135 mAh/g, and nanocomposite carbon anodes revealed better properties. This was due to the carbon aerogels' electrically conducting network in order to provide good access of Li+ ions and electrons to active material.
机译:碳气凝胶是纳米结构的多孔碳材料,其通过间苯二酚和甲醛的溶胶-凝胶工艺以及随后的前体气凝胶的热解获得。由于其高表面积,导电网络和化学惰性,碳气凝胶可以被视为可再充电电池中的理想电极。在本文中,分别使用碳气凝胶粉末和石墨粉末以及化合物粉末和粘合剂制备了纳米复合碳阳极。用不同的碳阳极和锂金属箔作为阴极,制成半电池。碳气凝胶的锂嵌入性能的电化学测量是在高纯度氩气下在手套箱中进行的。模型电池显示初始充电容量为1135 mAh / g,纳米复合碳阳极具有更好的性能。这是由于碳气凝胶的导电网络,以便使Li +离子和电子与活性材料的接触良好。

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