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Design and development of honeycomb structured nitrogen-rich cork derived nanoporous activated carbon for high-performance supercapacitors

机译:蜂窝状结构氮气富含软木塞衍生的纳米多孔活性炭的设计与开发,适用于高性能超级电容器

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Nitrogen-doped nanoporous activated carbon is considered as exciting material for energy storage applications owing to its ordered atomic arrangement and high electrical conductivity. In the present study, we focus on synthesizing cork derived activated carbon (CAC) using bio-waste (cork) by adopting melamine assisted chemical reaction in which three different stoichiometric ratios of cork carbon to melamine are used (1:1, 1:5, 1:10). As synthesized, nitrogen-doped carbons are further activated by a chemical method later to induce porosity. The XRD and Raman spectroscopic measurements revealed the presence of highly ordered graphitic carbon with few layered graphene-like structure after chemical activation process. among the carbon materials, CAC with a 1:1 (Carbon/melamine) ratio possess a unique honeycomb structure and exhibits a hierarchical micro to mesoporous nature with a high surface area (1378 m(2)/g), large pore volume (0.8 cm(3)/g) and average pore diameter of 3.1 nm. The resulting material with 4.38 wt.% of nitrogen content delivers capacitance of 133 F/g for supercapacitor application and its performance is on par with commercial YP-50F (102 F/g) at a current density of 1 A/g in 1 M TEABF(4)/AN between the potential window of 0-3 V. Further it displays an outstanding rate capability (i.e., 65 F/g at 20 A/g) and long cyclic stability (98% capacity retention after 10,000 cycles) by maintaining a specific energy of 42 Wh/Kg with a specific power of 750 W/Kg. The 3D inter-connected honeycomb-like structure with superior textural parameters (higher-surface area, large pore volumes, hierarchical pores and high graphitic nature) and nitrogen doping significantly contributed to the improved efficiency of CAC for Supercapacitor application.
机译:由于其有序的原子布置和高导电性,氮掺杂的纳米多孔活性炭被认为是用于能量储存应用的令人兴奋的材料。在本研究中,我们专注于使用生物废物(软木塞)通过采用三聚氰胺辅助化学反应来合成软木衍生的活性炭(CAC),其中使用三种不同化学计量的软骨碳对三聚氰胺的化学计量比(1:1,1:5 ,1:10)。如合成的那样,通过后面的化学方法进一步激活氮气掺杂的碳以诱导孔隙率。 XRD和拉曼光谱测量结果显示了化学活化过程后具有很少的层状石墨烯样结构的高度有序的石墨碳。在碳材料中,CAC具有1:1(碳/三聚氰胺)的比例具有独特的蜂窝结构,并且具有高表面积(1378米(2)/ g),大孔体积(0.8)的分层微小至介孔性质(0.8 Cm(3)/ g)和平均孔径为3.1nm。具有4.38重量%的所得材料。氮含量的%为超级电容器应用提供133 f / g的电容,其性能与商业YP-50F(102 f / g)表示在1米的电流密度为1 a / g Teabf(4)/潜在窗口之间的0-3 V.此外,它显示出优异的速率能力(即65 f / g以20 a / g)和长循环稳定性(10,000个循环后98%的容量保留)将特定能量保持为42WH / kg,特定功率为750 w / kg。具有卓越的纹理参数(高表面积,大孔隙体积,分层孔和高石墨性质)和氮掺杂的3D相互连接的蜂窝状结构显着促进了CAC对超级电容器应用的提高效率。

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