4.6 Article

First principles analysis for electronic structure of LaNi5-xCox alloys

Journal

ACTA PHYSICO-CHIMICA SINICA
Volume 22, Issue 11, Pages 1331-1335

Publisher

PEKING UNIV PRESS
DOI: 10.1016/S1872-1508(06)60066-1

Keywords

LaN4.5Co0.5; LaNi4Co; electronic structure; density functional theory; geometrical structure

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Electronic structures of LaNi5-xCox(x=0, 0.5,1) hydrogen-storage alloy have been studied theoretically using the method of total energy based on the density functional theory (DFT). The plane wave function was selected as the basis set in combination with the ultrasoft pseudopotential technology. Crystal structure, energy band structure, electronic density of states, and Mulliken density of LaNi5-xCOx were calculated. The results indicated that valence electrons were mainly fastened around fermi energy (E-F) and E-F moved toward the direction of lower energy with the increase of the Co content. According to the analysis of Mulliken overlap populations, the numerical values of the bonds between Ni-3g-Ni-3g and Ni-2c-Ni-2c decreased. It showed that Co doping let to the decrease in the bond energy between Ni-Ni. However, the values on the bond between La-Ni increased and the relevant bond energy increased.

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