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首页> 外文期刊>Bulletin of the Korean Chemical Society >Electrochemical Performances of Lithium-air Cell with Carbon Materials
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Electrochemical Performances of Lithium-air Cell with Carbon Materials

机译:碳材料锂空气电池的电化学性能

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This study investigates the requirements of lithium-air cathodes, which directly influence discharge capacity. The cathodes of Li-air cell are made by using five different carbon materials, such as Ketjen black EC600JD, Super P, Ketjen black EC300JD, Denka black, and Ensaco 250G. The Ketjen black EC600JD provides discharge capacity of 2600 mAh/g per carbon weight, while that of Ensaco 250G shows only 579 mAh/g. To figure out the differences of discharge capacity from carbon materials, their surface area and pore volume are analyzed. These are found out to be the critical factors in determining discharge capacity. Furthermore, carbon loading on Ni foam and amounts of electrolyte are significant factors that affect discharge capacity. In order to investigate catalyst effect, electrolytic manganese dioxide (EMD) is incorporated and delivered 4307 mAh/g per carbon weight. This infers that EMD facilitates to break O2 interactions and leads to enhance discharge capacity.
机译:这项研究调查了锂空气阴极的要求,这些要求直接影响放电容量。锂空气电池的阴极使用五种不同的碳材料制成,例如科琴黑EC600JD,Super P,科琴黑EC300JD,Denka黑和Ensaco 250G。 Ketjen黑色EC600JD的放电容量为每碳重2600 mAh / g,而Ensaco 250G的放电容量仅为579 mAh / g。为了弄清碳材料的放电容量的差异,分析了它们的表面积和孔体积。发现这些是确定放电容量的关键因素。此外,镍泡沫上的碳负载和电解质的量是影响放电容量的重要因素。为了研究催化剂的作用,加入了电解二氧化锰(EMD),每碳重可输送4307 mAh / g。这表明EMD有助于破坏O2的相互作用,并提高放电容量。

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