4.7 Article

Quantum dynamics of hydrogen atoms on graphene. I. System-bath modeling

期刊

JOURNAL OF CHEMICAL PHYSICS
卷 143, 期 12, 页码 -

出版社

AIP Publishing
DOI: 10.1063/1.4931116

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资金

  1. Regione Lombardia
  2. CINECA High Performance Computing Center through a LISA Initiative
  3. Division of Chemical Sciences, Office of Basic Energy Science, Office of Energy Research, U.S. Department of Energy [DE-FG02-87ER13744]
  4. U.S. Department of Energy (DOE) [DE-FG02-87ER13744] Funding Source: U.S. Department of Energy (DOE)

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An accurate system-bath model to investigate the quantum dynamics of hydrogen atoms chemisorbed on graphene is presented. The system comprises a hydrogen atom and the carbon atom from graphene that forms the covalent bond, and it is described by a previously developed 4D potential energy surface based on density functional theory ab initio data. The bath describes the rest of the carbon lattice and is obtained from an empirical force field through inversion of a classical equilibrium correlation function describing the hydrogen motion. By construction, model building easily accommodates improvements coming from the use of higher level electronic structure theory for the system. Further, it is well suited to a determination of the system-environment coupling by means of ab initio molecular dynamics. This paper details the system-bath modeling and shows its application to the quantum dynamics of vibrational relaxation of a chemisorbed hydrogen atom, which is here investigated at T = 0 K with the help of the multi-configuration time-dependent Hartree method. Paper II deals with the sticking dynamics. (C) 2015 AIP Publishing LLC.

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