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Effects of copper nitrate addition on the pore property and lithium storage performance of hierarchical porous carbon nanosheets from phenolic resin

机译:硝酸铜的添加对酚醛树脂分级多孔碳纳米片的孔性能和储锂性能的影响

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Hierarchical porous carbon nanosheets (HPCS) were prepared by using thermoplastic phenolic formalde-hyde resin as the carbon source and copper nitrate as the template precursor. The effects of Cu(NO_3)_2 loading content on the pore property and electrochemical performance of HPCS as anode material for lithium ion batteries were investigated. It was found that, with the addition of Cu(NO_3)_2, both the specific surface area and mesopore percentage increase. Correspondingly, the electrochemical performances of HPCS electrodes in terms of the specific capacity and rate performance improve for lithium ion batteries. The reasons were deduced and discussed from the view point of different pore size, especially the function of mesopores.
机译:以热塑性酚醛缩醛树脂为碳源,硝酸铜为模板前驱体,制备了多层多孔碳纳米片(HPCS)。研究了Cu(NO_3)_2的添加量对HPCS作为锂离子电池负极材料的孔性能和电化学性能的影响。发现,通过添加Cu(NO_3)_2,比表面积和中孔百分比均增加。相应地,就比容量和倍率性能而言,HPCS电极的电化学性能对于锂离子电池而言得以改善。从不同孔径,尤其是中孔功能的角度推论和讨论了原因。

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