Bandgap opening in MoTe2 thin flakes induced by surface oxidation

材料科学 扫描隧道显微镜 六方氮化硼 凝聚态物理 超导电性 带隙 过渡金属 密度泛函理论 金属 量子隧道 光电子学 氮化硼 薄膜 石墨烯 纳米技术 化学 物理 冶金 催化作用 计算化学 生物化学
作者
Yuan Gan,Jiyuan Liang,Chang-Woo Cho,Si Li,Yanping Guo,Xiao‐Ming Ma,Xuefeng Wu,Jinsheng Wen,Xu Du,Mingquan He,Chang Liu,Shengyuan A. Yang,Kedong Wang,Liyuan Zhang
出处
期刊:Frontiers of Physics in China [Higher Education Press]
卷期号:15 (3) 被引量:14
标识
DOI:10.1007/s11467-020-0952-x
摘要

Recently, the layered transition metal dichalcogenide 1T′-MoTe2 has generated considerable interest due to their superconducting and non-trivial topological properties. Here, we present a systematic study on 1T′-MoTe2 single-crystal and exfoliated thin-flakes by means of electrical transport, scanning tunnelling microscope (STM) measurements and band structure calculations. For a bulk sample, it exhibits large magneto-resistance (MR) and Shubnikov–de Hass oscillations in ρxx and a series of Hall plateaus in ρxy at low temperatures. Meanwhile, the MoTe2 thin films were intensively investigated with thickness dependence. For samples, without encapsulation, an apparent transition from the intrinsic metallic to insulating state is observed by reducing thickness. In such thin films, we also observed a suppression of the MR and weak anti-localization (WAL) effects. We attributed these effects to disorders originated from the extrinsic surface chemical reaction, which is consistent with the density functional theory (DFT) calculations and in-situ STM results. In contrast to samples without encapsulated protection, we discovered an interesting superconducting transition for those samples with hexagonal Boron Nitride (h-BN) film protection. Our results indicate that the metallic or superconducting behavior is its intrinsic state, and the insulating behavior is likely caused by surface oxidation in few layer 1T’-MoTe2 flakes.
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