Density-functional calculations with simulated annealing have been performed for aluminum clusters Alₙ up to n=10. There are many local minima in the energy surfaces, with a rich variety of structures and spin multiplicities. With increasing cluster size we find transitions from planar to nonplanar structures at n=5, and to states with minimum spin degeneracy at n=6. There are stable isomers of Al₅₋₋{Al}₁₀$ with buckled planar structures reminiscent of the layers in crystalline {α}-gallium. All structures show regular patterns of bond and dihedral angles. Trends in binding and ionization energies are compared with experiment and with the predictions of other calculations.
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R. Jones (1991) studied this question.
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