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单位点吡咯氮掺杂的sp杂化碳材料及其赝电容

Single-site pyrrolic-nitrogen-doped sp-hybridized carbon materials and their pseudocapacitance.

作者信息

Tian Kesong, Wang Junyan, Cao Ling, Yang Wei, Guo Wanchun, Liu Shuhu, Li Wei, Wang Fengyan, Li Xueai, Xu Zhaopeng, Wang Zhenbo, Wang Haiyan, Hou Yanglong

机构信息

State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, 066004, Qinhuangdao, China.

Beijing Innovation Center for Engineering Science and Advanced Technology (BIC-ESAT), College of Engineering, Peking University, 100871, Beijing, China.

出版信息

Nat Commun. 2020 Aug 4;11(1):3884. doi: 10.1038/s41467-020-17727-y.

Abstract

Integrating nitrogen species into sp-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.

摘要

将氮物种引入sp杂化碳材料已被证明是提高其电化学性能的有效方法。然而,由于在合成氮掺杂碳材料过程中不同氮构型之间的无控制转化,碳材料中不可避免地会出现氮物种的混合,这在很大程度上阻碍了对特定反应中电化学活性氮构型的精确识别。在此,我们报告了基于低温脱卤诱导及随后对3-卤代苯酚-3-氨基酚-甲醛(X-APF)共缩聚树脂进行碱活化热解的策略,制备了氮含量可调范围为0至4.22原子%的单吡咯型氮掺杂碳材料(SPNCMs)。此外,考虑到SPNCMs的赝电容与吡咯氮含量呈正相关,可以推断吡咯氮物种是氮掺杂碳材料中高度活跃的赝电容位点。这项工作为理解吡咯氮物种在氮掺杂碳材料中的作用提供了一个理想模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/000a/7403304/32d03ba4e302/41467_2020_17727_Fig1_HTML.jpg

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