Folds and creases are frequently found in graphene grown by chemical vapor deposition (CVD), due to the differing thermal expansion coefficients of graphene from the growth catalyst and the flexibility of the sheet during transfer from the catalyst. The structure of a few-layer graphene (FLG) crease is examined by aberration-corrected high-resolution transmission electron microscopy (AC-HRTEM). A study of 2D fast Fourier transforms (FFTs) taken about the region of the crease allowed for the crystal stacking structure of the system to be elucidated. It was found that strain-induced stacking faults were created in the AB Bernal-stacked FLG bulk around the region proximal to the crease termination; this is of interest as the stacking order of ...
Recently there has been interest in two-dimensional graphene-based superstructures, such as twisted ...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Terrace-sized, single-orientation graphene can be grown on top of a carbon buffer layer on silicon ...
Folds and creases are frequently found in graphene grown by chemical vapor deposition (CVD), due to ...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
The atomic structure at the boundary interface between interconnected few-layer graphene (FLG) domai...
Few layer graphene nanostructures are directiy imaged using aberration corrected high-resolution tra...
The atomic structure at the boundary interface between interconnected few-layer graphene (FLG) domai...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
The mechanical, electrical and chemical properties of chemically modified graphene (CMG) are intrins...
Few layer graphene nanostructures are directly imaged using aberration corrected high-resolution tra...
Supplementary information: S1: Photo electron emission microscopy and LEEM measurements of rotationa...
Upon cooling, branched line defects develop in epitaxial graphene grown at high temperature on Pt(11...
Microscopic features of graphene segregated on Ni films prior to chemical transfer-including atomic ...
International audienceWe report on an alternative route based on nanomechanical folding induced by a...
Recently there has been interest in two-dimensional graphene-based superstructures, such as twisted ...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Terrace-sized, single-orientation graphene can be grown on top of a carbon buffer layer on silicon ...
Folds and creases are frequently found in graphene grown by chemical vapor deposition (CVD), due to ...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
The atomic structure at the boundary interface between interconnected few-layer graphene (FLG) domai...
Few layer graphene nanostructures are directiy imaged using aberration corrected high-resolution tra...
The atomic structure at the boundary interface between interconnected few-layer graphene (FLG) domai...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
The mechanical, electrical and chemical properties of chemically modified graphene (CMG) are intrins...
Few layer graphene nanostructures are directly imaged using aberration corrected high-resolution tra...
Supplementary information: S1: Photo electron emission microscopy and LEEM measurements of rotationa...
Upon cooling, branched line defects develop in epitaxial graphene grown at high temperature on Pt(11...
Microscopic features of graphene segregated on Ni films prior to chemical transfer-including atomic ...
International audienceWe report on an alternative route based on nanomechanical folding induced by a...
Recently there has been interest in two-dimensional graphene-based superstructures, such as twisted ...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Terrace-sized, single-orientation graphene can be grown on top of a carbon buffer layer on silicon ...