假电容
氮气
碳纤维
热解
材料科学
苯酚
无机化学
电化学
化学
有机化学
超级电容器
物理化学
复合数
复合材料
电极
作者
Kesong Tian,Junyan Wang,Ling Cao,Wei Yang,Wanchun Guo,Shuhu Liu,Wei Li,Fengyan Wang,Xueai Li,Zhaopeng Xu,Zhen‐Bo Wang,Haiyan Wang,Yanglong Hou
标识
DOI:10.1038/s41467-020-17727-y
摘要
Integrating nitrogen species into sp2-hybridized carbon materials has proved an efficient means to improve their electrochemical performance. Nevertheless, an inevitable mixture of nitrogen species in carbon materials, due to the uncontrolled conversion among different nitrogen configurations involved in synthesizing nitrogen-doped carbon materials, largely retards the precise identification of electrochemically active nitrogen configurations for specific reactions. Here, we report the preparation of single pyrrolic N-doped carbon materials (SPNCMs) with a tunable nitrogen content from 0 to 4.22 at.% based on a strategy of low-temperature dehalogenation-induced and subsequent alkaline-activated pyrolysis of 3-halogenated phenol-3-aminophenol-formaldehyde (X-APF) co-condensed resins. Additionally, considering that the pseudocapacitance of SPNCMs is positively dependent on the pyrrolic nitrogen content, it could be inferred that pyrrolic nitrogen species are highly active pseudocapacitive sites for nitrogen-doped carbon materials. This work gives an ideal model for understanding the contribution of pyrrolic nitrogen species in N-doped carbon materials.
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