English

Accurate ab initio anharmonic force field and heat of formation for silane, SiH_4

Chemical Physics 2009-10-31 v1

Abstract

From large basis set coupled cluster calculations and a minor empirical adjustment, an anharmonic force field for silane has been derived that is consistently of spectroscopic quality (±1cm1\pm 1 cm^{-1} on vibrational fundamentals) for all isotopomers of silane studied. Inner-shell polarization functions have an appreciable effect on computed properties and even on anharmonic corrections. From large basis set coupled cluster calculations and extrapolations to the infinite-basis set limit, we obtain TAE_0=303.80 \pm 0.18 kcal/mol, which includes an anharmonic zero-point energy (19.59 kcal/mol), inner-shell correlation (-0.36 kcal/mol), scalar relativistic corrections (-0.70 kcal/mol), and atomic spin-orbit corrections (-0.43 kcal/mol). In combination with the recently revised \HVSI{0}, we obtain ΔHf,0[SiH4(g)]=9.9±0.4kcal/mol\Delta H^{\circ}_{f,0}[SiH_4(g)]=9.9 \pm 0.4 kcal/mol, in between the two established experimental values.

Keywords

Cite

@article{arxiv.physics/9906037,
  title  = {Accurate ab initio anharmonic force field and heat of formation for silane, SiH_4},
  author = {Jan M. L. Martin and Kim K. Baldridge and Timothy J. Lee},
  journal= {arXiv preprint arXiv:physics/9906037},
  year   = {2009}
}

Comments

Mol. Phys., in press