Pickard Chris J, Needs R J
Scottish Universities Physics Alliance, School of Physics and Astronomy, University of St. Andrews, St Andrews, KY16 9SS, United Kingdom.
Phys Rev Lett. 2009 Apr 10;102(14):146401. doi: 10.1103/PhysRevLett.102.146401. Epub 2009 Apr 7.
Ab initio density-functional-theory calculations and a structure-searching technique are used to identify candidate high-pressure phases of lithium (Li). We predict threefold coordinated structures to be stable in the pressure range 40-450 GPa and fourfold structures at higher pressures. We describe these low-coordination phases as elemental electrides. All of the stable phases are metallic but the Cmca-24 structure, and two distortions of it which are marginally the most stable in the pressure range 86-106 GPa, are nearly semiconducting with densities of electronic states at the Fermi energy of only a few percent of the free-electron value.
采用从头算密度泛函理论计算和结构搜索技术来识别锂(Li)的候选高压相。我们预测在40 - 450吉帕的压力范围内,三重配位结构是稳定的,而在更高压力下则是四重结构。我们将这些低配位相描述为元素电子化物。所有稳定相都是金属性的,但Cmca - 24结构及其在86 - 106吉帕压力范围内略微最稳定的两种畸变结构几乎是半导体,其费米能处的电子态密度仅为自由电子值的百分之几。