4.7 Article

Hydrogenation mechanism of small fullerene cages

Journal

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
Volume 41, Issue 1, Pages 375-383

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2015.10.102

Keywords

Hydrogenated fullerene; DFT; Hydrogenation barrier; Hydrogen storage

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Ab initio DFT (density functional theory) is used to investigate the hydrogenation energy and hydrogenation mechanism of C-n and CnHn fullerene cages from n = 20 to n = 60. All calculations have been performed using G03W package, with B3LYP exchange-functional and applying basis set 6-31G(d, p). It is found that the most stable hydrogenation sites on the Cn fullerene cages are (sic) and (sic) sites and on the CnHn fullerene cages are (sic), (sic) and (sic) sites. The calculations show that the required energy to initiate the hydrogen migration on the surface of Cn fullerene cages between two metastable structures of C54H is similar to 1.5 eV and on the surface of CnHn fullerene cages between metastable and stable structures of the C60H61 fullerene cage is similar to 2.35 eV. Also, it is found that the energy release from hydrogen migration is always enough to direct the hydrogenation process towards the most stable structures and it reduces the number of hydrogen atoms bonded to the fullerene cage via forming H-2 molecules. (C) Copyright 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

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