Chemical Vapor Deposition of Superconducting FeTe1–xSex Nanosheets
Dianyi Hu, Chen Ye, Xiaowei Wang, Xiaowei Wang, Xiaoxu Zhao, Lixing Kang, Jiawei Liu, Ruihuan Duan 等 21 位
Nanyang Technological University Chinese Academy of Sciences Suzhou Institute of Nano-tech and Nano-bionics National University of Singapore
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摘要与影响
FeTe 1– x Se x, a promising layered material used to realize Majorana zero modes, has attracted enormous attention in recent years. Pulsed laser deposition (PLD) and molecular-beam epitaxy (MBE) are the routine growth methods used to prepare FeTe 1– x Se x thin films. However, both methods require high-vacuum conditions and polished crystalline substrates, which hinder the exploration of the topological superconductivity and related nanodevices of this material. Here we demonstrate the growth of the ultrathin FeTe 1– x Se x superconductor by a facile, atmospheric pressure chemical vapor deposition (CVD) method. The composition and thickness of the two-dimensional (2D) FeTe 1– x Se x nanosheets are well controlled by tuning the experimental conditions. The as-prepared FeTe 0.8 Se 0.2 nanosheet exhibits an onset superconducting transition temperature of 12.4 K, proving its high quality. Our work offers an effective strategy for preparing the ultrathin FeTe 1– x Se x superconductor, which could become a promising platform for further study of the unconventional superconductivity in the FeTe 1– x Se x system.
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