Distinct superconducting properties and hydrostatic pressure effects in 2D α- and β-Mo2C crystal sheets

被引:0
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作者
Yunjie Fan
Chuan Xu
Xiang Liu
Chao Ma
Yuewei Yin
Hui-Ming Cheng
Wencai Ren
Xiaoguang Li
机构
[1] University of Science and Technology of China,Hefei National Laboratory for Physical Sciences at the Microscale, Department of Physics, and CAS Key Laboratory of Strongly
[2] Shenyang National Laboratory for Materials Science,coupled Quantum Matter Physics
[3] Institute of Metal Research,School of Material Science and Engineering
[4] Chinese Academy of Sciences,undefined
[5] University of Science and Technology of China,undefined
[6] Key Laboratory of Materials Physics,undefined
[7] Institute of Solid State Physics,undefined
[8] CAS,undefined
[9] Collaborative Innovation Center of Advanced Microstructures,undefined
来源
NPG Asia Materials | 2020年 / 12卷
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摘要
Recently, 2D Mo2C, a new member of the MXene family, has attracted much attention due to the exotic superconducting properties discovered in 2D α-Mo2C. Here, not only 2D α-Mo2C but also 2D β-Mo2C crystal sheets with distinct disordered carbon distributions were successfully grown. 2D β-Mo2C shows a much stronger superconductivity than 2D α-Mo2C, and their superconductivities have different hydrostatic pressure responses. The superconducting transition temperature Tc of 2D α-Mo2C shows a dome-shaped profile under pressure, implying the existence of two competing effects arising from phononic and electronic properties, while for 2D β-Mo2C, Tc decreases monotonically with increasing pressure, possibly due to phonon stiffening. These results indicate that the electronic properties have a more important influence on the superconductivity in 2D α-Mo2C compared to 2D β-Mo2C. The ordered and disordered carbon distributions in 2D α-Mo2C and β-Mo2C, respectively, may be the underlying origin for their different electronic and superconducting properties.
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