English

Interaction of W(CO)$_6$ with SiO$_2$ Surfaces -- A Density Functional Study

Materials Science 2016-08-14 v2

Abstract

The interaction of tungsten hexacarbonyl W(CO)6_6 precursor molecules with SiO2_2 substrates is investigated by means of density functional theory calculations with and without inclusion of long range van der Waals interactions. We consider two different surface models, a fully hydroxylated and a partially hydroxylated SiO2_2 surface, corresponding to substrates under different experimental conditions. For the fully hydroxylated surface we observe only a weak interaction between the precursor molecule and the substrate with physisorption of W(CO)6_6. Inclusion of van der Waals corrections results in a stabilization of the molecules on this surface, but does not lead to significant changes in the chemical bonding. In contrast, we find a spontaneous dissociation of the precursor molecule on the partially hydroxylated SiO2_2 surface where chemisorption of a W(CO)5_5 fragment is observed upon removal of one of the CO ligands from the precursor molecule. Irrespective of the hydroxylation, the precursor molecule prefers binding of more than one of its CO ligands. In the light of these results, implications for the initial growth stage of tungsten nano-deposits on SiO2_2 in an electron beam induced deposition process are discussed.

Keywords

Cite

@article{arxiv.1107.5172,
  title  = {Interaction of W(CO)$_6$ with SiO$_2$ Surfaces -- A Density Functional Study},
  author = {Kaliappan Muthukumar and Ingo Opahle and Juan Shen and Harald O. Jeschke and Roser Valentí},
  journal= {arXiv preprint arXiv:1107.5172},
  year   = {2016}
}

Comments

8 pages, 6 figures, submitted to Phys. Rev. B

R2 v1 2026-06-21T18:42:16.739Z