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High Capacity Carbon Based Electrodes for Lithium/Oxygen Batteries

机译:用于锂/氧电池的高容量碳基电极

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Porous carbon aerogels are prepared by polycondensation of resorcinol (R) and formaldehyde (F)catalyzed by sodium carbonate (C) followed by carbonization of the resultant aerogels at 800℃ in an inert atmosphere. The porous texture of the carbons has been adjusted by the change of the molar ratio of resorcinol to catalyst (R/C) in the gel precursors in the range of 100 to 500. The porous structure of the aerogels and carbon aerogels are characterized by N2 adsorption-desorption measurements at 77 K. It is found that total pore volume and average pore diameter of the carbons increase with increase in the R/C ratio of the gel precursors.The prepared carbon aerogels are used as active materials in fabrication of composite carbon electrodes. The electrochemical performance of the electrodes has been tested by using them as cathodes in a Li/O2 cell. Through the galvanostatic charge/discharge measurements, it is found that with an increase of R/C ratio, the specific capacity of the Li/O2 cell fabricated from the carbon aerogels increases from 716 to 2077 charge/discharge cycles indicate that the carbon samples possess excellent stability on cycling.
机译:通过碳酸钠(C)催化间苯二酚(R)和甲醛(F)的缩聚反应,然后在惰性气氛中于800℃将所得气凝胶碳化,制得了多孔碳气凝胶。碳的多孔质地已通过改变凝胶前体中间苯二酚与催化剂的摩尔比(R / C)的范围在100到500之间进行了调整。气凝胶和碳气凝胶的多孔结构的特征在于N2在77 K下进行吸附-解吸测量。发现碳的总孔体积和平均孔径随凝胶前体的R / C比的增加而增加。制得的碳气凝胶被用作制备复合碳的活性材料电极。电极的电化学性能已通过将其用作Li / O2电池中的阴极进行了测试。通过恒电流充放电测量,发现随着R / C比的增加,由碳气凝胶制成的Li / O2电池的比容量从716增加到2077,表明碳样品具有出色的骑行稳定性。

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