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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Insights into hydrogen atom adsorption on and the electrochemical properties of nitrogen-substituted carbon materials
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Insights into hydrogen atom adsorption on and the electrochemical properties of nitrogen-substituted carbon materials

机译:氢原子吸附和氮取代碳材料的电化学性质的见解

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The nitrogen substitution in carbon materials is investigated theoretically using the density functional theory method. Our calculations show that nitrogen substitution decreases the hydrogen adsorption energy if hydrogen atoms are adsorbed on both nitrogen atoms and the neighboring carbon atoms. On the contrary, the hydrogen adsorption energy can be increased if hydrogen atoms are adsorbed only on the neighboring carbon atoms. The reason can be explained by the electronic structures analysis of N-substituted graphene sheets. Nitrogen substitution reduces the pi electron conjugation and increases the HOMO energy of a graphene sheet, and the nitrogen atom is not stable due to its 3-valent character. This raises an interesting research topic on the optimization of the N-substitution degree, and is important to many applications such as hydrogen storage and the tokamaks device. The electronic structure studies also explain well why nitrogen substitution increases the capacitance but decreases the electron conductivity of carbon electrodes as was experimentally observed in our experiments on the supercapacitor.
机译:使用密度泛函理论方法对碳材料中的氮取代进行理论研究。我们的计算表明,如果氢原子同时吸附在氮原子和相邻的碳原子上,则氮取代会降低氢的吸附能。相反,如果氢原子仅被吸附在相邻的碳原子上,则可以增加氢的吸附能。原因可以通过N-取代石墨烯片的电子结构分析来解释。氮取代减少了pi电子共轭并增加了石墨烯片的HOMO能量,并且氮原子由于其3价特性而不稳定。这引起了关于N取代度的优化的有趣研究课题,并且对于诸如氢存储和托卡马克装置的许多应用是重要的。电子结构研究还很好地解释了为什么氮取代会增加电容而降低碳电极的电子电导率,正如我们在超级电容器上的实验所观察到的那样。

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