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- W3123308566 abstract "Abstract Atom-scaled ripple structure can be intrinsically formed because of thermal instability or induced stress in graphene or two-dimensional (2D) materials. However, it is difficult to estimate the period, amplitude, and shape of such a ripple structure. In this study, by applying the geometrical phase analysis method to atomically resolved transmission electron microscopy images, we demonstrate that the atom-scaled ripple structure of MoS 2 nanosheet can be quantitatively analyzed at the subnanometer scale. Furthermore, by analyzing the observed ripple structure of the MoS 2 nanosheet, we established that it is inclined by approximately 7.1° from the plane perpendicular to the incident electron beam; it had 5.5 and 0.3 nm in period and amplitude, respectively. For quantitative estimation of ripple structure, our results provide an effective method that contributes to a better understanding of 2D materials in the sub-nanometre scale." @default.
- W3123308566 created "2021-02-01" @default.
- W3123308566 creator A5016885479 @default.
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- W3123308566 date "2021-02-09" @default.
- W3123308566 modified "2023-10-14" @default.
- W3123308566 title "Quantitative estimation of atom-scaled ripple structure using transmission electron microscopy images" @default.
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- W3123308566 doi "https://doi.org/10.1088/1361-6528/abe006" @default.
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