| Literature DB >> 31157482 |
Yuqiang Fang1,2,3, Jie Pan1, Dongqin Zhang4,5, Dong Wang1, Hishiro T Hirose6, Taichi Terashima6, Shinya Uji6, Yonghao Yuan7,8, Wei Li7,8, Zhen Tian9, Jiamin Xue9, Yonghui Ma10, Wei Zhao1, Qikun Xue7,8, Gang Mu10, Haijun Zhang4,5, Fuqiang Huang1,2.
Abstract
Recently the metastable 1T'-type VIB-group transition metal dichalcogenides (TMDs) have attracted extensive attention due to their rich and intriguing physical properties, including superconductivity, valleytronics physics, and topological physics. Here, a new layered WS2 dubbed "2M" WS2 , is constructed from 1T' WS2 monolayers, is synthesized. Its phase is defined as 2M based on the number of layers in each unit cell and the subordinate crystallographic system. Intrinsic superconductivity is observed in 2M WS2 with a transition temperature Tc of 8.8 K, which is the highest among TMDs not subject to any fine-tuning process. Furthermore, the electronic structure of 2M WS2 is found by Shubnikov-de Haas oscillations and first-principles calculations to have a strong anisotropy. In addition, topological surface states with a single Dirac cone, protected by topological invariant Z2 , are predicted through first-principles calculations. These findings reveal that the new 2M WS2 might be an interesting topological superconductor candidate from the VIB-group transition metal dichalcogenides.Entities:
Keywords: 2M WS2; superconductivity; topological surface states
Year: 2019 PMID: 31157482 DOI: 10.1002/adma.201901942
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849