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首页> 外文期刊>Materials Chemistry Frontiers >A high-performance supercapacitor based on activated carbon fibers with an optimized pore structure and oxygen-containing functional groups
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A high-performance supercapacitor based on activated carbon fibers with an optimized pore structure and oxygen-containing functional groups

机译:基于高性能的超级电容器活性炭纤维的孔隙进行了优化结构和含氧官能团

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摘要

Low-cost activated carbon fibers (ACFs) were prepared from polyacrylonitrile-based precursor fibers abandoned by local factories via carbonization and CO2 activation. Oxygen-containing functional groups were introduced on the ACF surface via nitric acid and thermal treatment. ACFs with optimized pore structures and oxygen-containing functional groups display a remarkable capacitance of 214 F g~(-1) at a current density of 0.5 mA cm~(-2) and present an excellent cycling performance with a capacity retention of almost 100% over 3000 cycles. Moreover, the rate capability gains a significant improvement due to the existence of functional groups. The superb electrochemical performance of these materials provides a template of how to better engineer the ACFs' pore architecture and surface modifications to design enhanced electrode materials for high-performance supercapacitors.
机译:低成本的活性炭纤维(acf)准备从polyacrylonitrile-based前体纤维被当地的工厂通过抛弃碳化和活化二氧化碳。含氧官能团是通过硝酸和介绍了ACF表面热治疗。结构和含氧功能组显示的电容214 Fg ~(1)电流密度为0.5厘米~(2)和一个优良的循环性能能力保留近100%的3000岁以上的老人周期。由于存在的显著改善官能团。这些材料的性能提供了一个模板如何更好的工程师acf的孔隙体系结构和表面修改设计加强对高性能电极材料超级电容器。

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