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硬六方ε-NbN中超导性的发现

Discovery of Superconductivity in Hard Hexagonal ε-NbN.

作者信息

Zou Yongtao, Qi Xintong, Zhang Cheng, Ma Shuailing, Zhang Wei, Li Ying, Chen Ting, Wang Xuebing, Chen Zhiqiang, Welch David, Zhu Pinwen, Liu Bingbing, Li Qiang, Cui Tian, Li Baosheng

机构信息

State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun, 130012, China.

Mineral Physics Institute, State University of New York, Stony Brook, N.Y. 11794, United States.

出版信息

Sci Rep. 2016 Feb 29;6:22330. doi: 10.1038/srep22330.

Abstract

Since the discovery of superconductivity in boron-doped diamond with a critical temperature (TC) near 4 K, great interest has been attracted in hard superconductors such as transition-metal nitrides and carbides. Here we report the new discovery of superconductivity in polycrystalline hexagonal ε-NbN synthesized at high pressure and high temperature. Direct magnetization and electrical resistivity measurements demonstrate that the superconductivity in bulk polycrystalline hexagonal ε-NbN is below ∼11.6 K, which is significantly higher than that for boron-doped diamond. The nature of superconductivity in hexagonal ε-NbN and the physical mechanism for the relatively lower TC have been addressed by the weaker bonding in the Nb-N network, the co-planarity of Nb-N layer as well as its relatively weaker electron-phonon coupling, as compared with the cubic δ-NbN counterpart. Moreover, the newly discovered ε-NbN superconductor remains stable at pressures up to ∼20 GPa and is significantly harder than cubic δ-NbN; it is as hard as sapphire, ultra-incompressible and has a high shear rigidity of 201 GPa to rival hard/superhard material γ-B (∼227 GPa). This exploration opens a new class of highly desirable materials combining the outstanding mechanical/elastic properties with superconductivity, which may be particularly attractive for its technological and engineering applications in extreme environments.

摘要

自从在临界温度((T_C))接近4K的硼掺杂金刚石中发现超导性以来,过渡金属氮化物和碳化物等硬超导体引起了人们极大的兴趣。在此,我们报告了在高温高压下合成的多晶六方ε-NbN中发现的新超导性。直接磁化和电阻率测量表明,块状多晶六方ε-NbN中的超导性低于约11.6K,这明显高于硼掺杂金刚石的超导性。与立方δ-NbN相比,六方ε-NbN中Nb-N网络的键合较弱、Nb-N层的共面性及其相对较弱的电子-声子耦合,解释了六方ε-NbN中超导性的本质以及相对较低(T_C)的物理机制。此外,新发现的ε-NbN超导体在高达约20GPa的压力下仍保持稳定,并且比立方δ-NbN硬得多;它与蓝宝石一样硬,具有超不可压缩性,并且具有201GPa的高剪切刚度,可与硬/超硬材料γ-B(约227GPa)相媲美。这一探索开辟了一类极具吸引力的新材料,将出色的机械/弹性性能与超导性结合在一起,这对于其在极端环境中的技术和工程应用可能特别有吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0348/4770320/cb0b95c8fc10/srep22330-f1.jpg

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