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CuTe2 单晶的高温高压合成和物性表征

Translated title of the contribution: High-Temperature and High-Pressure Synthesis and Characterization of CuTe2 Single Crystal
  • Lifen Shi
  • , Ningning Wang
  • , Ziyi Liu
  • , Qi Cui
  • , Xiaoxiao Zhang
  • , Qingyuan Liu
  • , Yu Sui
  • , Bosen Wang
  • , Jianping Sun*
  • , Jinguang Cheng*
  • *Corresponding author for this work
  • CAS - Institute of Physics
  • University of Chinese Academy of Sciences
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The 3d transition metal dichalcogenide MX2 (M=Mn, Fe, Co, Ni, Cu, Zn; X=S, Se, Te) with pyrite structure has attracted widespread attention due to their novel physical properties. Among them, the CuX2 (X=S, Se, and Te) is the only known superconducting system, for which the superconducting transition temperatures (Tc) are 1.5 K (CuS2), 2.4 K (CuSe2) and 1.3 K (CuTe2), respectively. Because they can only be synthesized under high-pressure and high-temperature (HPHT) conditions, earlier reports on CuTe2 are based on the polycrystalline samples and the detailed physical properties have not been reported on single crystal so far. Here, we synthesized high-quality CuTe2 single crystals under HPHT conditions at 5 GPa and 900 ℃ using the Kawai type 6/8 two-stage multianvil apparatus and performed detailed crystal, transport, magnetism, and specific heat measurements on its physical properties. The results showed that it belongs to the weakly coupled type-II superconductor with Tc about 1.3 K. We systematically compared the relevant superconducting parameters of CuS2, CuSe2, and CuTe2 and further revealed the relationship between their density of state near the Fermi surface and superconducting properties.

Translated title of the contributionHigh-Temperature and High-Pressure Synthesis and Characterization of CuTe2 Single Crystal
Original languageChinese (Traditional)
Article number020104
JournalGaoya Wuli Xuebao/Chinese Journal of High Pressure Physics
Volume38
Issue number2
DOIs
StatePublished - Apr 2024

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