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Progress in the Characterization of the Surface Species in Activated Carbons by means of INS Spectroscopy Coupled with Detailed DFT Calculations

机译:INS光谱结合详细的DFT计算表征活性炭中表面物质的研究进展

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Activated carbons are materials with relevance in different industrial applications. Due to the inherent complexity and heterogeneity of their structures, an easy assignment of the species present on their surface has a challenging result. Only recently, with the possibility to collect well-resolved inelastic neutron spectra and to simulate by DFT methods more or less extended graphitic clusters, this task is starting to become feasible. Here we report our investigation on a steam activated carbon and we show that different vibrations in the region of out-of-plane C-H bending modes are specifically connected to hydrogen terminations belonging to extended and regular borders or to short and defective ones. Furthermore, simulations including heteroatoms such as oxygen allowed us to point out spectral regions with a contribution from carboxyl species.
机译:活性炭是与不同工业应用相关的材料。由于其结构固有的复杂性和异质性,存在于其表面上的物质的简单分配具有挑战性的结果。直到最近,才有可能收集分辨率良好的非弹性中子光谱,并通过DFT方法模拟或多或少地扩展石墨簇,这一任务才开始变得可行。在这里,我们报告了对蒸汽活性炭的研究,结果表明,平面C-H弯曲模式区域内的不同振动专门与属于延伸和规则边界的氢终端或短而有缺陷的氢终端相关。此外,包括氧等杂原子的模拟使我们能够指出具有羧基物种贡献的光谱区域。

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