TY - JOUR
T1 - Molecular dynamic simulation in titanium dioxide polymorphs
T2 - Rutile, brookite, and anatase
AU - Kim, Dae Weon
AU - Enomoto, Naoya
AU - Nakagawa, Zenbe E.
AU - Kawamura, Katsuyuki
PY - 1996/4
Y1 - 1996/4
N2 - Molecular dynamic (MD) simulations with a quantum correction were performed on the titanium dioxide polymorphs. Interatomic potential functions of our new model are composed of Coulomb, short-range repulsion, van der Waals, and Morse interactions. The energy parameters were empirically determined to reproduce the fundamental properties of rutile crystal. The optimized crystal structure of TiO2, rutile, was in very good agreement with experimental data in the literature. For brookite and anatase, our MD simulations reproduced well the crystal structures and several physical properties, including volume thermal expansivity and bulk modulus. The present MD simulations with a new interatomic potential function and parameters successfully predicted the crystal structures of the titanium dioxide polymorphs.
AB - Molecular dynamic (MD) simulations with a quantum correction were performed on the titanium dioxide polymorphs. Interatomic potential functions of our new model are composed of Coulomb, short-range repulsion, van der Waals, and Morse interactions. The energy parameters were empirically determined to reproduce the fundamental properties of rutile crystal. The optimized crystal structure of TiO2, rutile, was in very good agreement with experimental data in the literature. For brookite and anatase, our MD simulations reproduced well the crystal structures and several physical properties, including volume thermal expansivity and bulk modulus. The present MD simulations with a new interatomic potential function and parameters successfully predicted the crystal structures of the titanium dioxide polymorphs.
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U2 - 10.1111/j.1151-2916.1996.tb08553.x
DO - 10.1111/j.1151-2916.1996.tb08553.x
M3 - Article
AN - SCOPUS:0030125802
SN - 0002-7820
VL - 79
SP - 1095
EP - 1099
JO - Journal of the American Ceramic Society
JF - Journal of the American Ceramic Society
IS - 4
ER -