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Novel Synthesis of Nitrogen-Containing Bio-Phenol Resin and Its Molten Salt Activation of Porous Carbon for Supercapacitor Electrode

机译:含氮生物酚醛树脂的新型合成及其超级电容器电极上多孔碳的熔融盐活化

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摘要

Nitrogen hybridization is an attractive way to enhance the wettability and electric conductivity of porous carbon, which increases the capacitance of carbon-based supercapacitor, however, there is lack of low-cost methods to prepare the nitrogen-doped porous carbon materials. Herein, a novel facile nitrogen-containing bio-phenolic resin was synthesized by polymerization of the carbamate bio-oil, Phenol and paraformaldehyde. As a precursor of nitrogen-doped porous carbon, the nitrogen-containing bio-phenol resin was activated by the one-step molten-salt method. The resultant nitrogen-doped porous carbon showed a high specific surface area up to 1401 m2·g−1. As a supercapacitor electrode, the nitrogen-doped porous carbons showed specific capacitance of 159 F·g−1 at 0.5 A·g−1. It also exhibited high cyclic stability with 94.8% retention of the initial specific capacitance over 1000 charge-discharge cycles at 1.0 A·g−1. The results suggest that these nitrogen-containing bio-phenol resin provide a new source of nitrogen-doped porous carbon for high-performance supercapacitor electrodes.
机译:氮杂化是增强多孔碳的润湿性和导电性的有吸引力的方法,其增加了碳基超级电容器的电容,但是,缺乏低成本的方法来制备氮掺杂的多孔碳材料。在此,通过氨基甲酸酯生物油,苯酚和多聚甲醛的聚合合成了一种新型的易含氮生物酚醛树脂。作为掺氮多孔碳的前体,通过一步熔融盐法活化了含氮生物酚醛树脂。所得的氮掺杂多孔碳显示出高达1401m 2 ·g -1 的高比表面积。作为超级电容器电极,氮掺杂的多孔碳在0.5 A·g -1 下的比电容为159 F·g -1 。它还具有较高的循环稳定性,在1.0 A·g -1 的1000次充放电循环中,其初始比电容保持94.8%。结果表明,这些含氮生物酚醛树脂为高性能超级电容器电极提供了一种新型的氮掺杂多孔碳源。

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