Superconductivity up to 14.2 K in MnB 4 Under Pressure

The discovery of superconductivity in 3d transition-metal compounds with strong magnetism is interesting but rare. Especially for Mn-based compounds, there exist only very limited materials that show superconductivity. Here, the discovery of superconductivity is reported with an onset transition tem...

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Veröffentlicht in:Advanced materials (Weinheim) 2024-12, p.e2416882
Hauptverfasser: Xiang, Zhe-Ning, Zhang, Ying-Jie, Lu, Qing, Li, Qing, Li, Yiwen, Huang, Tianheng, Zhu, Yijie, Ye, Yongze, Sun, Jian, Wen, Hai-Hu
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Sprache:eng
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Zusammenfassung:The discovery of superconductivity in 3d transition-metal compounds with strong magnetism is interesting but rare. Especially for Mn-based compounds, there exist only very limited materials that show superconductivity. Here, the discovery of superconductivity is reported with an onset transition temperature up to 14.2 K in a Mn-based material MnB , which is the highest value among the stoichiometric Mn-based superconductors. By applying high pressure, the continuous suppression of a weak semiconducting behavior and the occurrence of superconductivity after ≈30 GPa are found. With further increasing pressure, the superconducting transition temperature (T ) is gradually enhanced and reaches the maximum onset transition value of ≈14.2 K at 150 GPa. The synchrotron X-ray diffraction data reveal the unchanged monoclinic (S.G: P2 /c) symmetry but an unusual crossover of the lattice parameters b and c in a certain pressure region as confirmed by the theoretical calculation. The findings show a promising way to explore high T superconductivity by combining the 3d-transition metal magnetic elements and light elements.
ISSN:0935-9648
1521-4095
DOI:10.1002/adma.202416882