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Nanocasting synthesis of an iron nitride-ordered mesopore carbon composite as a novel electrode material for supercapacitors

机译:氮化铁有序介孔碳复合材料的纳米铸造合成,作为新型超级电容器的电极材料

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摘要

Herein, a series of novel iron nitride (Fe2N)/cubic-ordered mesoporous carbon (OMC) composites (Fe2N@OMC) were synthesized via a facile nanocasting route and ammonia calcination. Physical characterization results indicate that small non-aggregated Fe2N nanoparticles were evenly distributed on the external surface and in the pores of the carbon material with a linear array of mesopores in a regular interval arrangement. An electrochemical test was carried out using Fe2N@OMC as a negative electrode of a supercapacitor in 6?mol L?1 KOH aqueous electrolytes. The results indicated that the obtained Fe2N@OMC-2 exhibited a superior specific capacitance of 547 F g?1 at 1 mV s?1 and 520 F g?1 at 0.5 A g?1, an excellent rate capability (398 F g?1 at 20 A g?1 with capacitance retention of 76%), and an outstanding cycling stability. After 1000 cycles, the specific capacitance retention of Fe2N@OMC-2 remained 85%, which was much higher than 28% of the bare Fe2N.
机译:在这里,一系列新型的氮化铁(Fe 2 N)/立方有序介孔碳(OMC)复合材料(Fe 2 N @ OMC)通过便捷的纳米浇铸路线和氨煅烧合成。物理表征结果表明,小的未聚集的Fe 2 N纳米颗粒均匀分布在碳材料的外表面和孔中,并呈线性排列的中孔。定期安排时间间隔。用Fe 2 N @ OMC作为超级电容器的负极在6?mol L ?1 中进行电化学测试 KOH水性电解质。结果表明,所得的Fe 2 N @ OMC-2的比电容为547 F g ?1 small> at 1 mV s ?1 和520 F g ?1 在0.5 A g < sup>?1 ,极好的速率能力(在20 A g ?1 <时为398 F g ?1 / sup> ,电容保持率为76%),并具有出色的循环稳定性。经过1000次循环后,Fe 2 N @ OMC-2的比电容保持率保持在85%,远高于裸Fe 2的28%。 > 2 N。

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