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Epitaxial growth and air-stability of monolayer Cu2Te 被引量:1

Epitaxial growth and air-stability of monolayer Cu2Te
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摘要 A new two-dimensional atomic crystal,monolayer cuprous telluride(Cu2Te)has been fabricated on a grapheneSi C(0001)substrate by molecular beam epitaxy(MBE).The low-energy electron diffraction(LEED)characterization shows that the monolayer Cu2Te forms a √3×√3superstructure with respect to the graphene substrate.The atomic structure of the monolayer Cu2Te is investigated through a combination of scanning tunneling microscopy(STM)experiments and density functional theory(DFT)calculations.The stoichiometry of the Cu2Te sample is verified by x-ray photoelectron spectroscopy(XPS)measurement.The angle-resolved photoemission spectroscopy(ARPES)data present the electronic band structure of the sample,which is in good agreement with the calculated results.Furthermore,air-exposure experiments reveal the chemical stability of the monolayer Cu2Te.The fabrication of this new 2D material with a particular structure may bring new physical properties for future applications. A new two-dimensional atomic crystal, monolayer cuprous telluride(Cu2Te) has been fabricated on a grapheneSi C(0001) substrate by molecular beam epitaxy(MBE). The low-energy electron diffraction(LEED) characterization shows that the monolayer Cu2Te forms ■ superstructure with respect to the graphene substrate. The atomic structure of the monolayer Cu2Te is investigated through a combination of scanning tunneling microscopy(STM) experiments and density functional theory(DFT) calculations. The stoichiometry of the Cu2Te sample is verified by x-ray photoelectron spectroscopy(XPS) measurement. The angle-resolved photoemission spectroscopy(ARPES) data present the electronic band structure of the sample, which is in good agreement with the calculated results. Furthermore, air-exposure experiments reveal the chemical stability of the monolayer Cu2Te. The fabrication of this new 2D material with a particular structure may bring new physical properties for future applications.
作者 钱凯 高蕾 李航 张帅 严佳浩 刘晨 王嘉鸥 钱天 丁洪 张余洋 林晓 杜世萱 高鸿钧 K Qian;L Gao;H Li;S Zhang;J H Yan;C Liu;J O Wang;T Qian;H Ding;Y Y Zhang;X Lin;S X Du;H-J Gao(Institute of Physics&University of Chinese Academy of Sciences,Chinese Academy of Sciences,Beijing 100190,China;Institute of High Energy Physics,Chinese Academy of Sciences,Beijing 100049,China;CAS Center for Excellence in Topological Quantum Computation,University of Chinese Academy of Sciences,Beijing 100190,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第1期99-102,共4页 中国物理B(英文版)
基金 Project supported by the National Key Research&Development Program of China(Grant Nos.2016YFA0202300 and 2018YF A0305800) the National Natural Science Foundation of China(Grant Nos.61888102,11604373,61622116,and 51872284) the CAS Pioneer Hundred Talents Program,China,the Strategic Priority Research Program of Chinese Academy of Sciences(Grant Nos.XDB30000000 and XDB28000000) Beijing Nova Program,China(Grant No.Z181100006218023) the University of Chinese Academy of Sciences
关键词 cuprous telluride(Cu2Te) scanning tunneling microscopy(STM) density functional theory(DFT) chemical stability cuprous telluride(Cu2Te) scanning tunneling microscopy(STM) density functional theory(DFT) chemical stability
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