Article ID Journal Published Year Pages File Type
9793058 Computational Materials Science 2005 6 Pages PDF
Abstract
In view of its interest for high pressure simulations of molecular crystals, the self-consistent field density functional tight-binding model is coupled to a symmetry-constrained optimization routine and applied to a stringent test case: the open structure of the acetonitrile crystal. The symmetry-constrained relaxation is compared with two symmetry-unconstrained relaxations, one starting from the observed X-ray structure and the other one from a structure obtained after a optimization of the atoms positions within the observed unit cell. According to the procedure employed for the crystal relaxation, three different energy minima with similar energies are found.
Related Topics
Physical Sciences and Engineering Engineering Computational Mechanics
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