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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Experimental Studies of Carbon Electrodes With Various Surface Area for Li-O-2 Batteries
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Experimental Studies of Carbon Electrodes With Various Surface Area for Li-O-2 Batteries

机译:LI-O-2电池各种表面积的碳电极实验研究

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摘要

Li-O-2 batteries with carbon electrodes made from three commercial carbons and carbon made from waste tea leaves are investigated in this study. The waste tea leaves are recycled from household tea leaves and activated using KOH. The carbon materials have various specific surface areas, and porous structures are characterized by the N-2 adsorption/desorption. Vulcan XC 72 carbon shows a higher specific surface area (264.1 m(2)/g) than the acetylene black (76.5 m(2)/g) and Super P (60.9 m(2)/g). The activated tea leaves have an extremely high specific surface area of 2868.4 m(2)/g. First, we find that the commercial carbons achieve similar discharge capacities of similar to 2.50 Ah/g at 0.5 mA/cm(2). The micropores in carbon materials result in a high specific surface area but cannot help to achieve higher discharge capacity because it cannot accommodate the solid discharge product (Li2O2). Mixing the acetylene black and the Vulcan XC 72 improves the discharge capacity due to the optimized porous structure. The discharge capacity increases by 42% (from 2.73 +/- 0.46 to 3.88 +/- 0.22 Ah/g) at 0.5 mA/cm(2) when the mass fraction of Vulcan XC 72 changes from 0 to 0.3. Second, the electrode made from activated tea leaves is demonstrated for the first time in Li-O-2 batteries. Mixtures of activated tea leaves and acetylene black confirm that mixtures of carbon material with different specific surface areas can increase the discharge capacity. Moreover, carbon made from recycled tea leaves can reduce the cost of the electrode, making electrodes more economically achievable. This study practically enhances the discharge capacity of Li-O-2 batteries using mixed carbons and provides a method for fabricating carbon electrodes with lower cost and better environmental friendliness.
机译:在本研究中研究了由三种商业碳和由废茶叶制成的碳电极制成的碳电极的电池。废茶叶从家用茶叶再循环并使用koh激活。碳材料具有各种比表面积,并且多孔结构的特征在于N-2吸附/解吸。 Vulcan XC 72碳显示出比乙炔黑(76.5M(2)/ g)和超级P(60.9m(2)/ g)的更高的比表面积(264.1m(2)/ g)。活性茶叶具有极高的比表面积为2868.4m(2)/ g。首先,我们发现商业碳达到了类似于2.50Ah / g的类似放电容量,0.5 mA / cm(2)。碳材料中的微孔导致高比表面积,但不能有助于实现更高的放电容量,因为它不能容纳固体排放产品(Li2O2)。混合乙炔黑和硫磺XC 72由于优化的多孔结构而改善了放电容量。当Vulcan XC 72的质量分数从0到0.3变化时,放电容量在0.5 mA / cm(2)时增加42%(从2.73 +/- 0.46至3.88 +/- 0.22 ah / g)。其次,由活性茶叶制成的电极首次在Li-O-2电池中进行说明。活性茶叶和乙炔黑色的混合物确认碳材料的混合物具有不同的特定表面积可以增加放电容量。此外,由再生茶叶制成的碳可以降低电极的成本,使电极更经济地实现。本研究实际上使用混合碳来增强Li-O-2电池的放电容量,并提供一种制造具有较低成本和更好环境友好性的碳电极的方法。

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