• 文献标题:   A First-Principles Study of Metal-Decorated Graphene Nanoribbons for Hydrogen Storage
  • 文献类型:   Article
  • 作  者:   TRANCA DC, SEIFERT G
  • 作者关键词:   graphene, hydrogen storage, dft simulation
  • 出版物名称:   ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIEINTERNATIONAL JOURNAL OF RESEARCH IN PHYSICAL CHEMISTRY CHEMICAL PHYSICS
  • ISSN:   0942-9352
  • 通讯作者地址:   Tech Univ Dresden
  • 被引频次:   5
  • DOI:   10.1515/zpch-2015-0742
  • 出版年:   2016

▎ 摘  要

On the basis of the first principle density functional theory (DFT) the stability, the electronic structure and the hydrogen adsorption of a metal functionalized monolayer of AGNR-O (armchair graphene nanoribbons) have been studied. The AGNR-O and AGNR-OH structures were decorated with different metal atoms, M = Ca, Mg, Ti. Ca and Mg as decorating metals were found to be superior to the transition metals due to small cohesive energies (no clustering) and the capability of binding multiple hydrogen molecules. The binding of up to four hydrogen molecules to the alkaline earth and transition metal atoms has been investigated. For the alkaline earth metal atoms the binding energy per H-2 molecule is almost independent from the number of adsorbed H-2 molecules. An increase in the adsorption energy by a factor of six or even more, from 0.07 eV/H-2 for "naked" nanoribbons to 0.35 eV/H-2 or to 0.69 eV/H-2 for AGNR-O structures has been observed. This different hydrogen binding energy is due to different construction of the AGNR-Oedges. The AGNR edge terminations influence the binding energies of the M/AGNR and consequently the H-2 binding energies on M/AGNR. If the binding energy between the metal atoms and AGNR is not very strong, then H-2 could bind much stronger to the M/AGNR. This could be a possible route to 10 wt% hydrogen storage capacity.