Pressure-induced novel bcc crystal structure with high Tc in Nb-Ti system
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Abstract
The high-pressure phase diagram of the Nb-Ti binary system at 0 K is explored by systematic crystal structure prediction. The results highlight a novel niobium-rich bcc phase, Nb7Ti, which is the only dynamically stable ordered Nb-Ti compound under ambient pressure. Extensive first-principles calculations have provided insights into the electronic structure, bonding and superconducting properties of Nb7Ti. The superconducting transition temperature (Tc) for Nb7Ti at ambient pressure is estimated within the framework of BCS theory to be about 17.5 K, which is significantly highernearly double-that of the widely utilized NbTi alloy. Furthermore, the results unveil that the high Tc is mainly attributed to the unique ordered lattice along with the strong electron-phonon coupling driven by interatomic interactions at mid-frequency and phonon softening induced by low-frequency Fermi surface nesting. Valuable insights are provided for the subsequent synthesis of applicationoriented superconductors at low pressure.
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Mengxin Yang, Jiajin Chen, Bohan Cao, Xiaoqian Gai, Yugang Su, Xinwei Wang, Shi Chen, Liang Guo, Defang Duan, Fubo Tian. Pressure-induced novel bcc crystal structure with high Tc in Nb-Ti system[J]. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/42/6/067404
Mengxin Yang, Jiajin Chen, Bohan Cao, Xiaoqian Gai, Yugang Su, Xinwei Wang, Shi Chen, Liang Guo, Defang Duan, Fubo Tian. Pressure-induced novel bcc crystal structure with high Tc in Nb-Ti system[J]. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/42/6/067404
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Mengxin Yang, Jiajin Chen, Bohan Cao, Xiaoqian Gai, Yugang Su, Xinwei Wang, Shi Chen, Liang Guo, Defang Duan, Fubo Tian. Pressure-induced novel bcc crystal structure with high Tc in Nb-Ti system[J]. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/42/6/067404
Mengxin Yang, Jiajin Chen, Bohan Cao, Xiaoqian Gai, Yugang Su, Xinwei Wang, Shi Chen, Liang Guo, Defang Duan, Fubo Tian. Pressure-induced novel bcc crystal structure with high Tc in Nb-Ti system[J]. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/42/6/067404
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