The atomic structure of a material influences its electronic, chemical, magnetic and mechanical properties. Characterising carbon nanomaterials, such as fullerenes, nanotubes and graphene, at the atomic level is challenging due to their chemical reactivity and low atomic mass. Transmission electron microscopy and scanning probe microscopy are two of the leading methods for imaging graphene at the atomic level. Here, we report on recent advances in atomic resolution imaging of graphene using aberration-corrected high resolution transmission electron microscopy and how it has revealed many of the structural deviations from the pristine monolayer form. Structures in graphene such as vacancy defects, edges, grain boundaries, linear chains, impu...
Carbon-based nanomaterials, such as graphene, Carbon Nanotubes and fullerenes, have attracted a grea...
Defective structures in two-dimensional (2D) materials have been proved to have significant influenc...
Direct imaging of surface molecules and the interfaces between soft and hard materials on functional...
Using high resolution transmission electron microscopy. we identify the specific atomic scale featur...
ABSTRACT Using high resolution transmission electron microscopy, we identify the specific atomic sca...
Using high resolution transmission electron microscopy, we identify the specific atomic scale featur...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
In order to understand the physical properties of materials it is necessary to determine the 3D posi...
In order to understand the physical properties of materials it is necessary to determine the 3D posi...
Modern aberration-corrected transmission electron microscope (TEM) with appropriate electron beam en...
The unusual properties of 2D materials directly rely on the atomic structure and defects of the mate...
Crystallographic defects play a key role in determining the properties of crystalline ma-terials. Th...
We employ scanning probe microscopy to reveal atomic structures and nanoscale morphology of graphene...
The initial isolation of graphene in 2004 spawned massive interest in this two-dimensional pure sp 2...
Defective structures in two-dimensional (2D) materials have been proved to have significant influenc...
Carbon-based nanomaterials, such as graphene, Carbon Nanotubes and fullerenes, have attracted a grea...
Defective structures in two-dimensional (2D) materials have been proved to have significant influenc...
Direct imaging of surface molecules and the interfaces between soft and hard materials on functional...
Using high resolution transmission electron microscopy. we identify the specific atomic scale featur...
ABSTRACT Using high resolution transmission electron microscopy, we identify the specific atomic sca...
Using high resolution transmission electron microscopy, we identify the specific atomic scale featur...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
In order to understand the physical properties of materials it is necessary to determine the 3D posi...
In order to understand the physical properties of materials it is necessary to determine the 3D posi...
Modern aberration-corrected transmission electron microscope (TEM) with appropriate electron beam en...
The unusual properties of 2D materials directly rely on the atomic structure and defects of the mate...
Crystallographic defects play a key role in determining the properties of crystalline ma-terials. Th...
We employ scanning probe microscopy to reveal atomic structures and nanoscale morphology of graphene...
The initial isolation of graphene in 2004 spawned massive interest in this two-dimensional pure sp 2...
Defective structures in two-dimensional (2D) materials have been proved to have significant influenc...
Carbon-based nanomaterials, such as graphene, Carbon Nanotubes and fullerenes, have attracted a grea...
Defective structures in two-dimensional (2D) materials have been proved to have significant influenc...
Direct imaging of surface molecules and the interfaces between soft and hard materials on functional...