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Structure of the new La3Ni2O7 superconductor under high hydrostatic pressure

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DataCite Commons2025-07-09 更新2025-04-16 收录
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https://data.isis.stfc.ac.uk/doi/INVESTIGATION/125376139/
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The very recent report of superconductivity in the bilayer Ruddlesden-Popper (RP) compound La3Ni2O7 has attracted a great deal of attention and raised hopes that this could herald an entirely new family of high-Tc oxides with phenomenology that is unrelated to the cuprates or other known materials. Consequently, there has been a flurry of reports, mostly concerned with theory and modelling, but with relatively little experimental support beyond the initial report (later confirmed by a second group). There is therefore an urgent need to understand the structure/properties relations in this material. In La3Ni2O7, superconductivity appears under applied pressures between 14 GPa and 43.5 GPa with a maximum of ~80 K, and is apparently linked to a structural phase transition at ~10 GPa. However, the crystallographic symmetry of the high-pressure phase is controversial, with conflicting reports that may be related to oxygen non-stoichiometry. Here, we propose to carry out a crystallographic study of La3Ni2O7-x as a function of temperature and pressure. We will study two samples with well-characterised oxygen contents, hence establishing anchor points in the T-P-x phase diagram that will guide future experiments and theory.
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创建时间:
2024-10-01
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