Fu Lei, Hu Debo, Mendes Rafael G, Rümmeli Mark H, Dai Qing, Wu Bin, Fu Lei, Liu Yunqi
College of Chemistry and Molecular Science , Wuhan University , Wuhan 430072 , People's Republic of China.
Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids , Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190 , People's Republic of China.
ACS Nano. 2018 Sep 25;12(9):9405-9411. doi: 10.1021/acsnano.8b04540. Epub 2018 Aug 29.
Platinum telluride (PtTe), a member of metallic noble-transition-metal dichalcogenides (MNTMDs), has emerged as an indispensable candidate for superconducting, magnetic, and other electronic phase engineering, as well as optic applications. Herein, we report the van der Waals epitaxy of high-crystalline few-layer PtTe crystals on inert mica. Density functional theory calculations are used to illustrate a type-II Dirac cone along the Γ-A direction in the PtTe crystal. Impressively, the PtTe devices exhibit an extra-high electrical conductivity of 10 S m, 1000 times higher than that of metallic 1T MoS. Meanwhile, the magnetoresistance effect at low temperatures reaches 800% in a field of 9.0 T. Furthermore, near-field nanooptical properties are assessed on PtTe. Considering the subwavelength effect, the plasmonic wavelength λ ≈ 200 nm of 1T PtTe is obtained and the carrier concentration calculated from λ is about 1.22 × 10 cm, which is 100-fold higher than that of MoTe in the previous reports. Therefore, our work demonstrates the growth of MNTMDs and provides insights into the plasmonic properties of 2D metallic telluride compounds.
碲化铂(PtTe)是金属性贵金属过渡金属二硫属化物(MNTMDs)的一员,已成为超导、磁性和其他电子相工程以及光学应用中不可或缺的候选材料。在此,我们报道了在惰性云母上高结晶度少层PtTe晶体的范德华外延生长。密度泛函理论计算用于说明PtTe晶体中沿Γ-A方向的II型狄拉克锥。令人印象深刻的是,PtTe器件表现出高达10 S m的超高电导率,比金属性1T MoS高1000倍。同时,在9.0 T的磁场中,低温下的磁阻效应达到800%。此外,还对PtTe的近场纳米光学性质进行了评估。考虑到亚波长效应,获得了1T PtTe的等离子体波长λ≈200 nm,根据λ计算出的载流子浓度约为1.22×10 cm,比先前报道中的MoTe高100倍。因此,我们的工作展示了MNTMDs的生长,并为二维金属碲化物化合物的等离子体性质提供了见解。