首页> 外文期刊>Bulletin of the Korean Chemical Society >Electrochemical Properties of Carbon Composites Prepared by Using Graphite Ball-milled in Argon and Air Atmosphere
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Electrochemical Properties of Carbon Composites Prepared by Using Graphite Ball-milled in Argon and Air Atmosphere

机译:氩气和大气下球磨石墨制备的碳复合材料的电化学性能

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A carbon composite was synthesized by mechanical mixing of ball-milled graphite and PVC powders, followed by pyrolysis reaction of PVC. Natural graphite ball milled under atmosphere of argon or air leads to a disordered structure. It appears that the electrochemical lithium intercalation reaction is dependent on the atmosphere in which the graphite is ball milled. The carbon composite obtained using air-milled graphite shows a high reversible capacity and high initial coulombic efficiency compared to argon-milled graphite. This is attributed to the enhanced thermal stability of a disordered structure in the air milled sample. For the one with air-milled graphite, the disordered structure is maintained during heat treatment, while argon-milled graphite is partially crystallized.
机译:通过机械混合球磨石墨和PVC粉末,然后将PVC热解反应来合成碳复合材料。在氩气或空气气氛下研磨的天然石墨球会导致结构混乱。看来电化学锂嵌入反应取决于石墨被球磨的气氛。与氩气研磨的石墨相比,使用空气研磨的石墨获得的碳复合材料显示出高的可逆容量和高的初始库伦效率。这归因于空气研磨样品中无序结构的增强的热稳定性。对于带有气磨石墨的石墨,在热处理过程中可保持无序结构,而氩磨石墨则部分结晶。

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