• Title of article

    Adsorption of formaldehyde molecule on Stone–Wales defected graphene doped with Cr, Mn, and Co: A theoretical study

  • Author/Authors

    Zhou، نويسنده , , Qingxiao and Wang، نويسنده , , Chaoyang and Fu، نويسنده , , Zhibing and Tang، نويسنده , , Yongjian and Zhang، نويسنده , , Hong، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    5
  • From page
    398
  • To page
    402
  • Abstract
    Adsorption of H2CO molecule on Cr, Mn and Co doped Stone–Wales defected graphene were theoretically studied using density functional theory (DFT) method. It was found that H2CO molecule had no considerable interaction with perfect or SW-defected graphene, but the presence of Stone–Wales defect in graphene enhanced the adsorption of H2CO, which exhibited larger binding energy and smaller bond distance. Chemisorptions were observed on the transition metal (TM) atoms (Cr, Mn and Co) doped structures. Compared with TM-doped perfect graphene, the binding energy of H2CO molecule on TM-doped defective graphene can be enlarged by the introduction of SW-defect. The density of states (DOS) showed that the contribution of hybridization between O atom of H2CO molecule and transition metal atom is mainly from the p or d orbitals. Furthermore, adsorption of H2CO affected the electronic conductance of the Cr and Mn doped defective graphene, which can be seen signal of gas sensor. It is expected that the results could provide useful information for the design of H2CO sensing devices.
  • Keywords
    Density functional theory , Stone–wales defect , Adsorption , H2CO molecule , graphene
  • Journal title
    Computational Materials Science
  • Serial Year
    2014
  • Journal title
    Computational Materials Science
  • Record number

    1692240