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氮掺杂碳网络:为活化分子氢探寻新途径的替代材料。

N-doped carbon networks: alternative materials tracing new routes for activating molecular hydrogen.

作者信息

Cortese Remedios, Ferrante Francesco, Roggan Stefan, Duca Dario

机构信息

Dipartimento di Fisica e Chimica dell'Università degli Studi di Palermo, Viale delle Scienze Ed. 17, 90128 Palermo (Italy).

出版信息

Chemistry. 2015 Feb 23;21(9):3806-14. doi: 10.1002/chem.201405896. Epub 2015 Jan 22.

Abstract

The fragmentation of molecular hydrogen on N-doped carbon networks was investigated by using molecular (polyaromatic macrocycles) as well as truncated and periodic (carbon nanotubes) models. The computational study was focused on the ergonicity analysis of the reaction and on the properties of the transition states involved when constellations of three or four pyridinic nitrogen atom defects are present in the carbon network. Calculations show that whenever N-defects are embedded in species characterized by large conjugated π-systems, either in polyaromatic macrocycles or carbon nanotubes, the corresponding H2 bond cleavage is largely exergonic. The fragmentation Gibbs free energy is affected by the final arrangement of the hydrogen atoms on the defect and by the extension of the π-electron cloud, but it is not influenced by the curvature of the system.

摘要

通过使用分子(多芳族大环)以及截短和周期性(碳纳米管)模型,研究了分子氢在氮掺杂碳网络上的碎片化。该计算研究集中于反应的能变分析以及当碳网络中存在三个或四个吡啶氮原子缺陷的组合时所涉及的过渡态的性质。计算表明,只要氮缺陷嵌入到以大共轭π体系为特征的物种中,无论是在多芳族大环还是碳纳米管中,相应的H₂键断裂在很大程度上都是放能的。碎片化吉布斯自由能受缺陷上氢原子的最终排列以及π电子云的扩展影响,但不受系统曲率的影响。

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