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Synthesis of Nitrogen-Containing Microporous Carbon with a Highly Ordered Structure and Effect of Nitrogen Doping on H2O Adsorption

作者:Peng‐Xiang Hou, Hironori Orikasa, Toshiaki Yamazaki, K. Matsuoka, Akira Tomita, Norihiko Setoyama, Yoshiaki Fukushima, Takashi Kyotani · 发表于:Chemistry of Materials · 年份:2005 · DOI:10.1021/cm051094k · 被引用次数:166 · 研究领域:Supercapacitor Materials and Fabrication、Mesoporous Materials and Catalysis、Covalent Organic Framework Applications

A nitrogen-containing microporous carbon with a highly ordered structure was synthesized by using zeolite Y as a template. The filling of carbon into zeolite channels was performed by the impregnation of furfuryl alcohol and subsequent chemical vapor deposition (CVD) of acetonitrile. The template was then removed by HF washing. The two-step carbon filling process (the impregnation and the CVD) was found to be essential for obtaining both high microporosity and ordering. This carbon is characterized by its very large surface area (3310 m 2 /g) and very narrow micropore size distribution (1.0−1.5 nm), and it contains nitrogen of 6 wt %, most of which is quaternary nitrogen. The distribution of nitrogen atoms in the carbon was examined by the detailed analysis of the carbon deposit at each carbon-filling step. The effect of nitrogen doping on the affinity to H 2 O molecules was elucidated from the comparison of the H 2 O adsorption behavior between this carbon and a nitrogen-free ordered porous carbon with a very similar pore structure. It was found that the nitrogen-containing carbon has a higher affinity to H 2 O molecules than the nitrogen-free carbon.