Spin-polarization-induced structural selectivity in Pd$_3X$ and Pt$_3X$ ($X=3d$) compounds
Abstract
Spin-polarization is known to lead to important {\it magnetic} and {\it optical} effects in open-shell atoms and elemental solids, but has rarely been implicated in controlling {\it structural} selectivity in compounds and alloys. Here we show that spin-polarized electronic structure calculations are crucial for predicting the correct crystal structures for Pd and Pt compounds. Spin-polarization leads to (i) stabilization of the structure over the structure in PtCr, PdCr, and PdMn, (ii) to the stabilization of the structure over the structure in PdCo and to (iii) ordering (rather than phase-separation) in PtCo and PdCr. The results are analyzed in terms of first-principles local spin density calculations.
Cite
@article{arxiv.mtrl-th/9506007,
title = {Spin-polarization-induced structural selectivity in Pd$_3X$ and Pt$_3X$ ($X=3d$) compounds},
author = {Z. W. Lu and B. M. Klein and A. Zunger},
journal= {arXiv preprint arXiv:mtrl-th/9506007},
year = {2009}
}
Comments
4 pages, REVTEX, 3 eps figures, to appear in PRL