Pressure-induced charge amorphisation in BiNiO<sub>3</sub>.
basic_science · Level V
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- Record sourced from PubMed, PMID 40044656.
- Also identified by DOI 10.1038/s41467-025-57247-1 and PMC identifier 11882806.
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Abstract
The order or disorder of electrons is fundamental to materials properties and also provides simple analogues to the different states of matter. A charge ordered (CO) insulating state, analogous to a crystalline solid, is observed in many mixed valence materials. On heating, this melts to a charge liquid (metallic) phase, often with interesting associated physics and functions such as the Verwey transition of Fe<sub>3</sub>O<sub>4</sub>, colossal magnetoresistances in manganites (e.g., La<sub>0.5</sub>Ca<sub>0.5</sub>MnO<sub>3</sub>), and superconductivity in K-doped BaBiO<sub>3</sub>. Here we report the observation of pressure induced charge amorphisation in a crystalline material. BiNiO<sub>3</sub> has charge distribution Bi<sup>3+</sup><sub>0.5</sub>Bi<sup>5+</sup><sub>0.5</sub>Ni<sup>2+</sup>O<sub>3</sub> with long range order of the Bi<sup>3+</sup> and Bi<sup>5+</sup> states at ambient pressure, but adopts another, structurally crystalline, but charge glassy, insulating phase at pressures of 4-5 GPa and temperatures below 200 K, before metallization above 6 GPa. This is analogous to the much-studied pressure induced amorphisations of many crystalline materials and melting is even observed at accessible pressure/temperature. BiNiO<sub>3</sub> provides fundamental insights to the study of amorphisation using charge states rather than atoms or molecules.