Transition-metal dichalcogenides from disintercalation processes. Crystal structure determination and Mossbauer study of Li2FeS2and its disintercalates LixFeS2(0.2⩽x⩽2)

Abstract
In agreement with its hexagonal subcell parameters (a=b=3.908(2) AA and c=6.279(4) AA) and c/a ratio of 1.601, the Li2FeS2 structure was found to be constructed from a hexagonal close packing of S2- anions with tetrahedral iron ions. Different filling of the two (FeS4) sites was found to be responsible for the 2a*2b*c supercell. Lithium ions are scattered on tetrahedral and octahedral sites, some of the latter remaining empty because of intercationic Coulombic repulsions. Mossbauer study of LixFeS2 disintercalates (0.21.5FeS2 of a LixFeS2/Li electrochemical cell. The occurrence of a new iron disulphide FeS2 (Fe3+S2-(S2)2-12/), as characterised by previous infrared analyses, is confirmed by its Mossbauer characteristics showing two distinct iron(III) sites different from that of FeS2 of the pyrite or marcassite type. The oxidoreduction process of the disintercalations and intercalations involving iron and sulphur as redox centres is better understood as well as their actions on the cationic structural alterations.