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A simple method to fabricate N-doped hierarchical porous carbon for supercapacitors

机译:一种制备用于超级电容器的N掺杂分级多孔碳的简单方法

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Direct carbonization of nitrogen-containing precursors combined with activation is an effective way to prepare nitrogen-doped hierarchical porous carbon. The most common activation agents being used such as KOH and NaOH may cause serious corrosion to the manufacturing equipment. To resolve this problem, a facile approach has been developed to prepare phenolic resin-derived nitrogen-doped hierarchical porous carbon using sodium acetate as the activation agent and hexamethylenetetramine as the nitrogen source. Acting as an in situ activation agent, sodium acetate is less corrosive. The results show that the sample obtained at 900°C (PHS-900) reaches a maximum specific surface area (SsubBET/sub) of 1591 msup2/sup gsup?1/sup. Benefiting from the optimum balance between high nitrogen content (5.41 at.%) and relatively large surface area (827 msup2/sup gsup?1/sup), the optimal sample PHS-700 exhibits a high specific capacitance of 352 F gsup?1/sup when it is used as an electrode in 7 M KOH aqueous electrolyte with a three-electrode system. Furthermore, it also shows excellent long-term stability in a two-electrode cell (95.3% retention after 10 000 cycles). The good electrochemical performance of the samples and the low corrosion, template-free preparation make it a promising strategy to fabricate nitrogen-doped hierarchical porous carbon for supercapacitor electrode materials.
机译:含氮前体的直接碳化与活化相结合是制备氮掺杂的分级多孔碳的有效方法。最常用的活化剂(例如KOH和NaOH)可能会严重腐蚀制造设备。为了解决该问题,已经开发了一种简便的方法,以乙酸钠作为活化剂和六亚甲基四胺作为氮源来制备酚醛树脂衍生的氮掺杂的分级多孔碳。作为原位活化剂,乙酸钠的腐蚀性较小。结果表明,在900°C(PHS-900)下获得的样品的最大比表面积(S BET )为1591 m 2 g ?1 。受益于高氮含量(5.41 at。%)和较大表面积(827 m 2 g ?1 )之间的最佳平衡,PHS-700样品表现出最佳用作三电极系统的7 M KOH水性电解质中的电极时,具有352 F g ?1 的高比电容。此外,它在两电极电池中也显示出优异的长期稳定性(10000次循环后保留率达95.3%)。样品的良好电化学性能和低腐蚀,无需模板的制备使其成为制造用于超级电容器电极材料的氮掺杂分级多孔碳的有前途的策略。

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