Article ID Journal Published Year Pages File Type
1611017 Journal of Alloys and Compounds 2014 6 Pages PDF
Abstract
Computer simulation has been widely applied in many research fields owing to its superiority in revealing an insight understanding of the phenomena. In this work, the thermodynamics, core-level spectroscopy, morphology, and work function of TiCl3 with three different crystalline phases (α, β, and γ) have been comprehensively computed employing the Materials Studio package. Our computational DFT-D approach gives a structural description of the TiCl3 phases in good agreement with experiment. The core-level spectroscopy confirmed that α, β, and γ modifications for TiCl3 have lightly affected on the valences of the constitutional elements. A series of possible growth faces (h k l) were deduced using the classic Bravais-Friedel-Donnay-Harker (BFDH) model. We conclude that the sequence of work function for (0 0 1) surface was α > β ≈ γ.
Related Topics
Physical Sciences and Engineering Materials Science Metals and Alloys
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