Geometric bonding effects in the X<sup>2</sup>A<sub>1</sub>, A<sup>2</sup>∑<sup>+</sup><sub>u</sub>, and B<sup>2</sup>II<sub>g </sub>states of Li<sub>2</sub>F
Data(s) |
2009
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Resumo |
Published ab-initio and pseudopotential calculations for the dialkali halide systems suggest that the preferred co-linear geometry is for the metal to approach the metal end of the alkali halide. Here, ab-initio calculations on the Li2F system reveal that the well depth on the halide side in this radical is much deeper and is a local saddle-point associated with the ionic non-linear global minima. Although many features of the pseudopotential surfaces are confirmed, significant differences are apparent including the existence of a linear excited state instead of a triangular one, a considerably deeper global minimum some 50% lower in energy and a close approach between the X2A1 and the states, with the minimum 87 kJ mol-1 below the ground state asymptote. All the results can be rationalised as the avoided crossings between a long range, covalent potential dominant within the LiLiF geometry and an ionic state that forms the global minimum. Calculations on the 3rd 2A' potential indicate that even for Li + LiF collisions at ultracold temperatures the collision dynamics could involve as many as three electronic states. |
Formato |
application/pdf |
Identificador | |
Idioma(s) |
eng |
Direitos |
info:eu-repo/semantics/openAccess |
Fonte |
Wright , K , Rogers , D & Lane , I 2009 , ' Geometric bonding effects in the X 2 A 1 , A 2 ∑ + u , and B 2 II g states of Li 2 F ' Journal of Chemical Physics , vol 131 , no. 10 , 104306 . DOI: 10.1063/1.3216373 |
Tipo |
article |