| Literature DB >> 17973381 |
Masaki Azuma1, Sandra Carlsson, Jennifer Rodgers, Matthew G Tucker, Masahiko Tsujimoto, Shintaro Ishiwata, Seiji Isoda, Yuichi Shimakawa, Mikio Takano, J Paul Attfield.
Abstract
The valence state change of BiNiO3 perovskite under pressure has been investigated by a powder neutron diffraction study and electronic-state calculations. At ambient pressure, BiNiO3 has the unusual charge distribution Bi(3+)(0.5)Bi(5+)(0.5)Ni(2+)O3 with ordering of Bi(3+) and Bi(5+)charges on the A sites of a highly distorted perovskite structure. High-pressure neutron diffraction measurements and bond valence sum calculations show that the pressure-induced melting of the charge disproportionated state leads to a simultaneous charge transfer from Ni to Bi, so that the high-pressure phase is metallic Bi(3+)Ni(3+)O3. This unprecedented charge transfer between A and B site cations coupled to electronic instabilities at both sites leads to a variety of ground states, and it is predicted that a Ni-charge disproportionated state should also be observable.Entities:
Year: 2007 PMID: 17973381 DOI: 10.1021/ja074880u
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419