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作 者:Liangliang Zhang Tao Wang Tu-Nan Gao Hailong Xiong Rui Zhang Zhilin Liu Shuyan Song Sheng Dai Zhen-An Qiao
机构地区:[1]State Key Laboratory of Inorganic Synthesis and Preparative Chemistry,College of Chemistry,Jilin University,Changchun,Jilin 130012 [2]State Key Laboratory of Rare Earth Resource Utilization,Changchun Institute of Applied Chemistry,Chinese Academy of Sciences,Changchun 130022 [3]Chemical Sciences Division,Oak Ridge National Laboratory,Oak Ridge,TN 37831
出 处:《CCS Chemistry》2021年第2期870-881,共12页中国化学会会刊(英文)
基 金:supported financially by the Young Thousand Talented Program and the National Natural Science Foundation of China(21671073 and 21621001);the“111”Project of the Ministry of Education of China(B17020),and Program for JLU Science and Technology Innovative Research Team.
摘 要:Nitrogen doping could improve the performance of carbon materials in electrocatalysis,CO_(2) adsorption,and energy storage.[1]However,the control of the doping type and the amount of nitrogen(N)-doped in carbon materials in a simple and environmentally friendly way remains challenging.Herein,we report a facile,multistage,self-assembly strategy for the synthesis of two-dimensional N-doped mesoporous carbon(2D NMC)by using graphene oxide(GO)as a structure-directing agent.The resultant 2D GO@NMCs rendered quantitatively controllable mesopores(8–25 nm).The 2D GO@NMCs rendered quantitatively controllablemesopores(8–25nm),high and controllable N content(up to 19 wt%),and the percentages of pyridine and pyridone/pyrrolic N atoms were as high as 49.9%and 35.3%,respectively.Due to these unique characteristics,the fabricated 2D GO@NMCs exhibited an ultrahigh surface-areanormalized capacitance of up to 90.6μF cm−2,which was much higher than the theoretical electrochemical double-layer capacitance of activated carbon(15–25μF cm−2).Moreover,our proposed multistage self-assembly strategy is versatile,and thus,could be extended to the synthesis of one-dimensional(1D)nanotubes@NMC and zero-dimensional(0D)nanospheres@NMC materials.
关 键 词:multistage self-assembly mesoporous carbon nitrogen-doped carbon high pyridine nitrogen supercapacitor
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