The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) are investigated using in situ scanning electron microscopy and complementary structural characterization of the catalyst with electron backscatter diffraction. A general growth model is outlined that considers precursor dissociation, mass transport, and attachment to the edge of a growing domain. We thereby analyze graphene growth dynamics at different length scales and reveal that the rate-limiting step varies throughout the process and across different regions of the catalyst surface, including different facets of an individual graphene domain. The facets that define the domain shapes lie normal to slow growth directions, which are determin...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) ...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) ...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) ...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) ...
The dynamics of graphene growth on polycrystalline Pt foils during chemical vapor deposition (CVD) a...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...