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Is La3Ni2O6.5 a Bulk Superconducting Nickelate?

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arxiv 2311.11122 v1 pith:CDHHNMNE submitted 2023-11-18 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords highbeenbulkla3ni2o6observedphasesuperconductingtemperatures
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Superconducting states onsetting at moderately high temperatures have been observed in epitaxially-stabilized RENiO2-based thin films. However, recently it has also been reported that superconductivity at high temperatures is observed in bulk La3Ni2O7-{\delta} at high pressure, opening further possibilities for study. Here we report the reduction profile of La3Ni2O7 in a stream of 5% H2/Ar gas and the isolation of the metastable intermediate phase La3Ni2O6.45, which is based on Ni2+. Although this reduced phase does not superconduct at ambient or high pressures, it offers insights into the Ni-327 system and encourages the future study of nickelates as a function of oxygen content.

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  1. Evolution of magnetism in Ruddlesden-Popper bilayer nickelate revealed by muon spin relaxation

    cond-mat.str-el 2024-12 conditional novelty 6.0 of 10

    Muon spin relaxation finds long-range magnetic order below 161 K in La1.9Pr1.1Ni2O6.97 and short-range order below 30 K in oxygen-deficient La3Ni2O6.63, linking oxygen vacancies to suppressed magnetism.

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