Zhao Wendi, Song Hao, Du Mingyang, Jiang Qiwen, Ma Tiancheng, Xu Ming, Duan Defang, Cui Tian
Institute of High Pressure Physics, School of Physical Science and Technology, Ningbo University, Ningbo 315211, China.
State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun 130012, China.
Phys Chem Chem Phys. 2023 Feb 8;25(6):5237-5243. doi: 10.1039/d2cp05850b.
Compressed hydrogen-rich compounds have received extensive attention as appealing contenders for superconductors. Here, we found several stable hydrides YZrH, YZrH, YZrH and YZrH, and a series of metastable clathrate hexahydrides in the systematic investigation of Y-Zr-H ternary hydrides under pressure. Electron-phonon coupling calculations indicate that they all exhibit high temperature superconductivity and perform better than the binary Zr-H system. YZrH can maintain dynamic stability down to ambient pressure and keep a critical temperature () of 16 K. The stable YZrH and metastable YZrH with high hydrogen content exhibit high of 156 K and 185 K at 200 GPa, respectively. Further analysis shows that the phonon modes associated with H atoms contribute significantly to the electron-phonon coupling. The hydrogen content and the stoichiometric ratio of Y and Zr closely affect the density of states at the Fermi level, thereby affecting the superconductivity. Our work presents an important step toward understanding the superconductivity and stability of transition metal ternary hydrides.
作为超导体的有力候选材料,富氢化合物受到了广泛关注。在此,我们在对Y-Zr-H三元氢化物进行的高压系统研究中,发现了几种稳定的氢化物YZrH、YZrH、YZrH和YZrH,以及一系列亚稳包合物六氢化物。电子-声子耦合计算表明,它们均表现出高温超导性,且性能优于二元Zr-H体系。YZrH在常压下仍能保持动态稳定性,临界温度()为16 K。稳定的YZrH和高氢含量的亚稳YZrH在200 GPa时分别表现出156 K和185 K的高临界温度。进一步分析表明,与H原子相关的声子模式对电子-声子耦合有显著贡献。氢含量以及Y和Zr的化学计量比密切影响费米能级处的态密度,从而影响超导性。我们的工作朝着理解过渡金属三元氢化物的超导性和稳定性迈出了重要一步。