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Novel phases of lithium-aluminum binaries from first-principles structural search

R. Sarmiento-Pérez, T. Cerqueira, I. Valencia-Jaime, M. Amsler, S. Goedecker, A. Romero, S. Botti, M. Marques

The Journal of Chemical Physics, 142, 024710, (2015)

DOI: 10.1063/1.4905141

Download: BibTEX

Intermetallic Li–Al compounds are on the one hand key materials for light-weight engineering, and on the other hand, they have been proposed for high-capacity electrodes for Li batteries. We determine from first-principles the phase diagram of Li–Al binary crystals using the minima hopping structural prediction method. Beside reproducing the experimentally reported phases (LiAl, Li3Al2, Li9Al4, LiAl3, and Li2Al), we unveil a structural variety larger than expected by discovering six unreported binary phases likely to be thermodynamically stable. Finally, we discuss the behavior of the elastic constants and of the electric potential profile of all Li–Al stable compounds as a function of their stoichiometry.

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{"type":"article", "name":"r.sarmiento-pérez20151", "author":"R. Sarmiento-Pérez and T. Cerqueira and I. Valencia-Jaime and M. Amsler and S. Goedecker and A. Romero and S. Botti and M. Marques", "title":"Novel phases of lithiumaluminum binaries from firstprinciples structural search", "journal":"The Journal of Chemical Physics", "volume":"142", "OPTnumber":"2", "OPTmonth":"1", "year":"2015", "OPTpages":"024710", "OPTnote":"", "OPTkey":"density functional theory; phase transitions; electrostatics; elastic modulus; Poisson's ratio; shear modulus; crystal structure; alloys; batteries; stoichiometry", "DOI":"10.1063/1.4905141"}
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