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用于高性能超级电容器的氮掺杂中空结构介孔碳纳米球的合成。

Synthesis of N-Doped Hollow-Structured Mesoporous Carbon Nanospheres for High-Performance Supercapacitors.

机构信息

Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, School of Environmental and Biological Engineering, Nanjing University of Science and Technology , Nanjing 210094, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2016 Mar 23;8(11):7194-204. doi: 10.1021/acsami.6b02404. Epub 2016 Mar 11.

Abstract

We have demonstrated a facile and controllable synthesis of monodispersed N-doped hollow mesoporous carbon nanospheres (N-HMCSs) and yolk-shell hollow mesoporous carbon nanospheres (N-YSHMCSs) by a modified "silica-assisted" route. The synthesis process can be carried out by using resorcinol-formaldehyde resin as a carbon precursor, melamine as a nitrogen source, hexadecyl trimethylammonium chloride as a template, and silicate oligomers as structure-supporter. The morphological (i.e., particle size, shell thickness, cavity size, and core diameter) and textural features of the carbon nanospheres are easily controlled by varying the amount of ammonium. The resultant carbon nanospheres possess high surface areas (up to 2464 m(2) g(-1)), large pore volumes (up to 2.36 cm(3) g(-1)), and uniform mesopore size (∼2.4 nm for N-HMCSs, ∼ 4.5 nm for N-YSHMCSs). Through combining the hollow mesoporous structure, high porosity, large surface area, and N heteroatomic functionality, the as-synthesized N-doped hollow-structured carbon nanospheres manifest excellent supercapacitor performance with high capacitance (up to 240 F/g), favorable capacitance retention (97.0% capacitive retention after 5000 cycles), and high energy density (up to 11.1 Wh kg(-1)).

摘要

我们通过一种改进的“硅辅助”路线,展示了单分散氮掺杂中空介孔碳纳米球(N-HMCSs)和蛋黄壳中空介孔碳纳米球(N-YSHMCSs)的简便可控合成。该合成过程可以使用间苯二酚-甲醛树脂作为碳前体、三聚氰胺作为氮源、十六烷基三甲基氯化铵作为模板和硅酸低聚物作为结构支撑剂进行。通过改变铵的用量,很容易控制碳纳米球的形态(即粒径、壳厚、腔尺寸和核直径)和结构特征。所得碳纳米球具有高比表面积(高达 2464 m²/g)、大孔体积(高达 2.36 cm³/g)和均匀的中孔尺寸(N-HMCSs 为 ∼2.4nm,N-YSHMCSs 为 ∼4.5nm)。通过结合中空介孔结构、高孔隙率、大表面积和 N 杂原子功能,所合成的氮掺杂中空结构碳纳米球表现出优异的超级电容器性能,具有高电容(高达 240F/g)、良好的电容保持率(5000 次循环后电容保持率为 97.0%)和高能量密度(高达 11.1Wh/kg)。

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