DFT and TB study of the geometry of hydrogen adsorbed on graphynes

  • Lee, Hunpyo
  • Koo, Jahyun
  • Capone, Massimo
  • Kwon, Yongkyung
  • Lee, Hoonkyung
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초록

Using density-functional calculations (DFT) and a tight-binding model, we investigate the origin of distinct favorable geometries which depend on the type of graphyne used. The change in the H geometry is described in terms of the tuning of the hopping between sp(2)-bonded C atoms and sp-bonded C atoms hybridized with the H atoms. We find that the different preferred geometry for each type of graphyne is associated with the electronic effects due to different symmetries rather than a steric effect minimizing the repulsive interaction between the H atoms. The band gaps are significantly tuned as the hopping varies, except in alpha-graphyne, in agreement with the result of our previous DFT study (Koo J et al 2013 J. Phys. Chem. C 117 11960). Our model can be used to describe the geometry and electronic properties of hydrogenated graphynes.

키워드

graphynehydrogenationstight-binding modelELECTRONIC-PROPERTIESALPHA-GRAPHYNEBAND-GAPGRAPHENESTORAGECARBONPHASES
제목
DFT and TB study of the geometry of hydrogen adsorbed on graphynes
저자
Lee, HunpyoKoo, JahyunCapone, MassimoKwon, YongkyungLee, Hoonkyung
DOI
10.1088/0953-8984/26/38/385301
발행일
2014-09-24
유형
Article
저널명
Journal of Physics: Condensed Matter
26
38