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Preparation of Porous Carbons Using NaOH,K2CO3,Na2CO3 and Na2S2O3 Activating Agents and Their Supercapacitor Application:A Comparative Study

机译:使用NaOH,K2CO3,NA2CO3和NA2S2O3激活剂及其超级电容器应用:一项比较研究,制备多孔碳

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摘要

The sustainable energy development of green carbon precursors and inexpensive activating agents has gained great attention with respect to the manufacture of high-performance electrode materials for supercapacitors.Though the most investigated activation agents such as ZnCl2 and KOH provide porous carbon possessing the high surface area and large charge storage capacity,those activation agents suffer from the use of high dosage utilization and poor carbon production yield.Herein,we report an alternative preparation method for porous carbons using NaOH,K2CO3,Na2CO3 and Na2S2O3 as activating agents,respectively.Activating performances of four pore-forming agents were compared in terms of textural,morphological and electrochemical performance.It was found that the NaOH-activated electrode material(C-NaOH)exhibited a high specific capacitance of 199 Fg~(-1)at a current density of 0.5 Ag~(-1)thanks to its large surface area along with large pore volume.In the two-electrode system,the symmetric SC assembled by C-NaOH electrodes delivered an energy density of 4.7 Wh/kg at a power density of 127 W/kg and maintained 3.9 Wh/kg at a power density of 1560 W/kg.Another outcome of this study was that the Na2S2O3-assisted activating agent could introduce heteroatom into the carbon framework,which contributes to pseudocapacitance behavior of electrodes.Overall,the alternative activating strategy could provide a highperformance carbon electrode and may offer a pathway for an advanced energy storage technology.
机译:绿色碳前体和廉价激活剂的可持续能量发展已广泛关注超级电容器的高性能电极材料。大型电荷存储容量,这些激活剂使用高剂量利用率和碳生产差的损失。在这里,我们报告了使用NaOH,K2CO3,NA2CO3和NA2S2O3作为激活剂的多孔碳的替代制备方法,分别为激活剂。激活了激活性能。比较了四种孔形成剂,以纹理,形态和电化学性能进行比较。发现NaOH激活的电极材料(C-NAOH)表现出199 fg〜(-1)的高特异性电容,以当前的密度0.5 ag〜(-1)归功于其较大的表面积以及较大的孔体积。在两电极系统中,对称由C-NAOH电极组装的RIC SC以127 W/kg的功率密度提供了4.7 WH/kg的能量密度,并以1560 W/kg的功率密度保持3.9 WH/kg。 NA2S2O3辅助激活剂可以将杂原子引入碳框架,从而有助于电极的伪电磁行为。替代替代激活策略可以提供高强度的碳电极,并可能为先进的储能技术提供A途径。

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