We built a full-dimensional analytical potential energy surface of the ground electronic state of Li2H from ca. 20,000 ab initio multi-reference configuration interaction calculations, including core–valence correlation effects. The surface is flexible enough to accurately describe the three dissociation channels: Li (2s 2S) + LiH (1Σ+), Li2 (1Σg+) + H (1s 2S) and 2Li (2s 2S) + H (1s 2S). Using a local fit of this surface, we calculated pure (J = 0) vibrational states of Li2H up to the barrier to linearity (ca. 3400 cm−1 above the global minimum) using a vibrational self-consistent field/virtual state configuration interaction method. We found 18 vibrational states below this barrier, with a maximum of 6 quanta in th...
This work was supported by a grant of computer time from the Ohio Supercomputer Center.Author Instit...
A quantitative description of the bonding features of LiH based on VBSCF method and 6-311G ** basis ...
The reactive behavior of the [LiH2](+) system is investigated by Computing the potential energy surf...
International audienceWe built a full-dimensional analytical potential energy surface of the ground ...
We present a new accurate potential energy surface (PES) for the ground state H + Li2 reaction from ...
Three-dimensional potential energy surfaces (PESs) have been computed, and numerically fitted, for t...
Three-dimensional potential energy surfaces (PESs) have been computed, and numerically fitted, for t...
Ab initio configuration-interaction computations which invoke an effective core potential approximat...
Trabalho completo: acesso restrito, p.123–126We present a new accurate potential energy surface (PES...
Author Institution: Chemistry Division, Argonne National Laboratory; Computer Center, University of ...
International audienceWe have generated an ab initio three-dimensional potential energy surface (PES...
Electronic structure calculations have been performed to characterize the potential energy surface o...
Full configuration interaction (FCI) has been used in conjunction with the lithium [6s5p3d1f] (Iron,...
We present a new three-dimensional potential energy surface (PES) for the electronic ground state of...
We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the po...
This work was supported by a grant of computer time from the Ohio Supercomputer Center.Author Instit...
A quantitative description of the bonding features of LiH based on VBSCF method and 6-311G ** basis ...
The reactive behavior of the [LiH2](+) system is investigated by Computing the potential energy surf...
International audienceWe built a full-dimensional analytical potential energy surface of the ground ...
We present a new accurate potential energy surface (PES) for the ground state H + Li2 reaction from ...
Three-dimensional potential energy surfaces (PESs) have been computed, and numerically fitted, for t...
Three-dimensional potential energy surfaces (PESs) have been computed, and numerically fitted, for t...
Ab initio configuration-interaction computations which invoke an effective core potential approximat...
Trabalho completo: acesso restrito, p.123–126We present a new accurate potential energy surface (PES...
Author Institution: Chemistry Division, Argonne National Laboratory; Computer Center, University of ...
International audienceWe have generated an ab initio three-dimensional potential energy surface (PES...
Electronic structure calculations have been performed to characterize the potential energy surface o...
Full configuration interaction (FCI) has been used in conjunction with the lithium [6s5p3d1f] (Iron,...
We present a new three-dimensional potential energy surface (PES) for the electronic ground state of...
We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the po...
This work was supported by a grant of computer time from the Ohio Supercomputer Center.Author Instit...
A quantitative description of the bonding features of LiH based on VBSCF method and 6-311G ** basis ...
The reactive behavior of the [LiH2](+) system is investigated by Computing the potential energy surf...