Crystal Structures of Dense Lithium: A Metal-Semiconductor-Metal Transition
Abstract
Ab initio random structure searching and single-crystal x-ray diffraction have been used to determine the full structures of three phases of lithium, recently discovered at low temperature above 60 GPa. A structure with C2mb symmetry, calculated to be a poor metal, is proposed for the oC88 phase (60-65 GPa). The oC40 phase (65-95 GPa) is found to have a lowest-enthalpy structure with C2cb symmetry, in excellent agreement with the x-ray data. It is calculated to be a semiconductor with a band gap of ∼1eV at 90 GPa. oC24, stable above 95 GPa, has the space group Cmca, and refined atomic coordinates are in excellent agreement with previous calculations.
- Publication:
-
Physical Review Letters
- Pub Date:
- March 2011
- DOI:
- 10.1103/PhysRevLett.106.095502
- Bibcode:
- 2011PhRvL.106i5502M
- Keywords:
-
- 61.50.Ks;
- 61.05.cp;
- 62.50.-p;
- 71.20.-b;
- Crystallographic aspects of phase transformations;
- pressure effects;
- X-ray diffraction;
- High-pressure effects in solids and liquids;
- Electron density of states and band structure of crystalline solids