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Elastic coupling between layers in two-dimensional materials
- Gao, Yang;
- Kim, Suenne;
- Zhou, Si;
- Chiu, Hsiang-Chih;
- Nelias, Daniel;
- 외 6명
WEB OF SCIENCE
106SCOPUS
106초록
Two-dimensional materials, such as graphene and MoS2, are films of a few atomic layers in thickness with strong in-plane bonds and weak interactions between the layers. The in-plane elasticity has been widely studied in bending experiments where a suspended film is deformed substantially; however, little is known about the films' elastic modulus perpendicular to the planes, as the measurement of the out-of-plane elasticity of supported 2D films requires indentation depths smaller than the films' interlayer distance. Here, we report on sub-angstrom-resolution indentation measurements of the perpendicular-to-the-plane elasticity of 2D materials. Our indentation data, combined with semi-analytical models and density functional theory, are then used to study the perpendicular elasticity of few-layer-thick graphene and graphene oxide films. We find that the perpendicular Young's modulus of graphene oxide films reaches a maximum when one complete water layer is intercalated between the graphitic planes. This non-destructive methodology can map interlayer coupling and intercalation in 2D films.
키워드
- 제목
- Elastic coupling between layers in two-dimensional materials
- 저자
- Gao, Yang; Kim, Suenne; Zhou, Si; Chiu, Hsiang-Chih; Nelias, Daniel; Berger, Claire; de Heer, Walt; Polloni, Laura; Sordan, Roman; Bongiorno, Angelo; Riedo, Elisa
- DOI
- 10.1038/NMAT4322
- 발행일
- 2015-07
- 유형
- Article
- 저널명
- Nature Materials
- 권
- 14
- 호
- 7
- 페이지
- 714 ~ 720