Litcius/Paper detail

A New Superconducting 3R-WS<sub>2</sub> Phase at High Pressure

Wenting Zhang, Yuqiang Fang, Zihan Zhang, Fubo Tian, Yanping Huang, Xin Wang, Xiaoli Huang, Fuqiang Huang, Tian Cui

2021The Journal of Physical Chemistry Letters22 citationsDOI

Abstract

High-pressure investigation has been shown to be of paramount significance for changing the conventional lattice or bringing fascinating properties, especially inducing superconducting phases. Here we studied the application of pressure to the recently synthesized 2M-WS 2 with the record T c (8.8 K) among transition metal dichalcogenides (TMDs) at ambient pressure by electrical resistance investigations, synchrotron X-ray studies, and theoretical calculations. T c in the initial 2M-WS 2 dropped from the maximum to become undetected, accompanied by a phase transition into a semiconductor, 3R-WS 2, at 15 GPa. The successive metallization and superconducting transitions in 3R-WS 2 were observed at 48.8 GPa with T c ≈ 2.5 K. This is the first experimental case in which superconductivity has been realized in the 3R phase among TMDs. We propose that the degradation of superconductivity in 2M-WS 2 and the reemergence of superconductivity in 3R-WS 2 are mainly attributable to changes in the density of states near the Fermi surface driven by the interlayer coupling.

Topics & Concepts

SuperconductivityCondensed matter physicsAmbient pressureSynchrotronMaterials sciencePhase (matter)Fermi surfaceFermi levelPhase transitionLattice (music)Electrical resistivity and conductivitySynchrotron radiationSemiconductorSuperconducting transition temperatureMetalHigh pressurePhysicsEngineering physicsThermodynamicsMetallurgyOptoelectronicsNuclear physicsQuantum mechanicsAcousticsElectron2D Materials and ApplicationsMXene and MAX Phase MaterialsPerovskite Materials and Applications
A New Superconducting 3R-WS<sub>2</sub> Phase at High Pressure | Litcius