Atomic arrangement of van der Waals heterostructures using X-ray scattering and crystal truncation rod analysis

  • Kim, Ryung
  • Choi, Byoung Ki
  • Lee, Kyeong Jun
  • Kim, Hyuk Jin
  • Lee, Hyun Hwi
  • ... Chang, Seo Hyoung
  • 외 3명
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초록

Vanadium diselenide (VSe2) has intriguing physical properties such as unexpected ferromagnetism at the two-dimensional limit. However, the experimental results for room temperature ferromagnetism are still controversial and depend on the detailed crystal structure and stoichiometry. Here we introduce crystal truncation rod (CTR) analysis to investigate the atomic arrangement of bilayer VSe2 and bilayer graphene (BLG) heterostructures grown on a 6H–SiC(0001) substrate. Using non-destructive CTR analysis, we were able to obtain electron density profiles and detailed crystal structure of the VSe2/BLG heterostructures. Specifically, the out-of-plane lattice parameters of each VSe2 layer were modulated by the interface compared to that of the bulk VSe2 1T phase. The atomic arrangement of the VSe2/BLG heterostructure provides deeper understanding and insight for elucidating the magnetic properties of the van der Waals heterostructure. © 2022 Korean Physical Society

키워드

Crystal truncation rodTransition-metal dichalcogenidevan der WaalsVanadium diselenideX ray scatteringSURFACE
제목
Atomic arrangement of van der Waals heterostructures using X-ray scattering and crystal truncation rod analysis
저자
Kim, RyungChoi, Byoung KiLee, Kyeong JunKim, Hyuk JinLee, Hyun HwiRhee, Tae GyuKhim, Yeong GwangChang, Young JunChang, Seo Hyoung
DOI
10.1016/j.cap.2022.11.014
발행일
2023-02
유형
Article
저널명
Current Applied Physics
46
페이지
70 ~ 75