J. Phys. Chem. C, 111 (51), 18995 -19000, 2007. 10.1021/jp074920g S1932-7447(07)04920-5
Web Release Date: December 1, 2007

Copyright © 2007 American Chemical Society

Mechanistic Study on Hydrogen Spillover onto Graphitic Carbon Materials

Liang Chen, Alan C. Cooper, Guido P. Pez, and Hansong Cheng*

Air Products and Chemicals, Incorporated, 7201 Hamilton Boulevard, Allentown, Pennsylvania 18195-1501

Received: June 24, 2007

In Final Form: September 25, 2007

Abstract:

We present a systematic study on the possible mechanisms of hydrogen spillover onto several carbon-based materials using density functional theory (DFT). Adsorption and diffusion of atomic hydrogen on a graphene sheet, single-walled carbon nanotubes, and a polyaromatic compound, hexabenzocoronene, were calculated, and the potential energies along the selected adsorption and diffusion minimum energy pathways were mapped out. We show that the migration of H atoms from a Pt cluster catalyst to the substrates is facile at ambient conditions with a small energy barrier, although the process is slightly endothermic, and that the H atoms can be either physisorbed or chemisorbed on carbon surfaces. Our results indicate that diffusion of H atoms in a chemisorbed state is energetically difficult since it requires C-H bond breaking and hydrogen spillover would occur likely via physisorption of H atoms. The curvature of the carbon materials is found to have a pronounced influence on the mobility of H atoms. The role of the "bridge" materials used in experiments is also discussed.


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