Abstract
Niobium monoxide generally refers to Nb3O3 with a pseudorock-salt structure, which is known as thermodynamically the most stable phase, exhibiting superconductivity below 1.38 K; neither bulk nor thin film form of rock-salt NbO thus has been reported so far. In this study, metastable rock-salt NbO has been successfully synthesized through a nonequilibrium process with vapor deposition. The present synthesis of rock-salt NbO marked its enhancement of superconductivity, whose transition temperature could reach up to 7.4 K, more than 5 times as high as that of the pseudorock-salt Nb3O3. The structure-sensitive electronic properties of the rock-salt NbO will be further discussed not only experimentally but also theoretically with the aid of DFT + U + V calculations.
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CITATION STYLE
Kimura, R., Kaminaga, K., Kobayashi, T., Cho, Y., Maruyama, S., Maeda, A., & Matsumoto, Y. (2024). Elevating the Superconducting Temperature in Epitaxially Stabilized Rock-Salt NbO. Chemistry of Materials, 36(10), 5028–5036. https://doi.org/10.1021/acs.chemmater.4c00097
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