The Huckel Model for Small Metal Cousters. I. Geometry, Stability and Relationship to Graph Theory.

Abstract

The relative stabilities of alkali-like metal clusters, M sub N and M sub n (+) with 2 < or = n < or = 9, are calculated within the framework of the simple Huckel model. With the aid of graph theory, the binding energies for all possible Huckel structures are determined. With the exception of M5(+) and M6(+), the Huckel model gives minimum energy structures which are the same as those predicted by recent Local-Spin-Density and Configuration Interaction calculations. Since the Huckel method is independent of the mechanical details of the bonding, a close connection is inferred between a cluster's stability and its topology. In the paper following this one, the Huckel results are extended to include absolute atomization energies and ionization potentials. In addition, it is shown that cluster energies may be quantitatively extrapolated to the bulk phase.

Document Details

Document Type
Technical Report
Publication Date
Dec 01, 1986
Accession Number
ADA175752

Entities

People

  • A. C. Beri
  • D. M. Lindsay
  • Thomas F. George
  • Youqi Wang

Organizations

  • University at Buffalo

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Atomization
  • Geometry
  • Graph Theory
  • Ionization
  • Ionization Potentials
  • Mathematics
  • Topology

Readers

  • Computational Modeling and Simulation
  • Graph Algorithms and Convex Optimization.
  • Quantum Chemistry

Technology Areas

  • AI & ML
  • AI & ML - Bayesian Inference