## Abstract We present the minimum‐energy structures and energetics of clusters of the linear N~2~O molecule with small numbers of __para__‐hydrogen molecules with pairwise additive potentials. Interaction energies of (__p‐__H~2~)–N~2~O and (__p‐__H~2~)–(__p‐__H~2~) complexes were calculated by ave
Energetics, structure and excess electrons in small sodium-chloride clusters
✍ Scribed by H. Häkkinen; R.N. Barnett; Uzi Landman
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 756 KB
- Volume
- 232
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The structure and energetics of stoichiometric (NaCl)n, 1 ~< n ~< 4, clusters, and of halide-deficient clusters in the sequence Na4Clm, 0 ~< m ~< 3, are studied using local-spin-density functional calculations, with and without exchange-correlation gradient corrections. The energy optimized structures of (NaC1) n clusters for 1 ~< n ~< 3 are two-dimensional converting to a three-dimensional cuboid for n = 4. The optimal structures of Na4C13 and Na4C12 are three-dimensional, deriving from that of the stoichiometric (NaCI)4 parent cluster, with the excess electrons substituting for the missing halide atoms. The optimal structure of Na4C1 is two-dimensional with the metal ions forming an approximate rhombus, and the chlorine ion capping one of the edges. In analogy with color centers in bulk ionic crystals, the excess electrons in the halogen-deficient clusters occupy energy levels which are split from the bottom of the unoccupied 'conduction band' of (NaCI)4. Analysis of the electronic spatial distributions and participation ratios indicates that the excess electrons are of a more delocalized nature in comparison with the electrons occupying the p-like 'valence band'.
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