In this paper, the authors describe the conditions under which Fe forms encapsulated nanocrystals beneath the surface of graphite, and they characterize these islands (graphite + Fe) thoroughly. The authors use the experimental techniques of scanning tunneling microscopy (STM) plus x-ray photoelectron spectroscopy (XPS) and the computational technique of density functional theory (DFT). Necessary conditions for encapsulation are preexisting ion-induced defects in the graphite substrate and elevated deposition temperature of 875–900 K. Evidence of encapsulation consists of atomically resolved STM images of a carbon lattice, both on top of the islands and on the sloping sides. The nature of the images indicates that this carbon lattice corres...
Motivated by recent in situ studies of carbon nanotube growth from large transition-metal nanopartic...
We present an extensive experimental study of the conditions under which Cu forms encapsulated islan...
In cast iron, graphite develops in conjunction with the metallic matrix during solidification. The m...
In this paper, the authors describe the conditions under which Fe forms encapsulated nanocrystals be...
We describe and analyze in detail the shapes of Fe islands encapsulated under the top graphene layer...
We show that 3 metals – Dy, Ru, and Cu – can form multilayer intercalated (encapsulated) islands at ...
Using scanning tunneling microscopy, we show that Pt clusters can be encapsulated beneath the surfac...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Using scanning tunneling microscopy, x-ray photoelectron spectroscopy, and x-ray absorption spectros...
We present an extensive experimental study of the conditions under which Cu forms encapsulated islan...
Motivated by recent in situ studies of carbon nanotube growth from large transition-metal nanopartic...
The understanding of metal nucleation on graphene is essential for promising future applications, es...
We performed an experiment to study the thermal stability of metal on graphene. We show that Fe, Gd,...
Metal nanoclusters can be anchored at defective sites of graphene sheets to strengthen their thermal...
International audienceWe compare, by in situ annealing of carbon nanofibres (CNFs) in the TEM, the c...
Motivated by recent in situ studies of carbon nanotube growth from large transition-metal nanopartic...
We present an extensive experimental study of the conditions under which Cu forms encapsulated islan...
In cast iron, graphite develops in conjunction with the metallic matrix during solidification. The m...
In this paper, the authors describe the conditions under which Fe forms encapsulated nanocrystals be...
We describe and analyze in detail the shapes of Fe islands encapsulated under the top graphene layer...
We show that 3 metals – Dy, Ru, and Cu – can form multilayer intercalated (encapsulated) islands at ...
Using scanning tunneling microscopy, we show that Pt clusters can be encapsulated beneath the surfac...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Using scanning tunneling microscopy, x-ray photoelectron spectroscopy, and x-ray absorption spectros...
We present an extensive experimental study of the conditions under which Cu forms encapsulated islan...
Motivated by recent in situ studies of carbon nanotube growth from large transition-metal nanopartic...
The understanding of metal nucleation on graphene is essential for promising future applications, es...
We performed an experiment to study the thermal stability of metal on graphene. We show that Fe, Gd,...
Metal nanoclusters can be anchored at defective sites of graphene sheets to strengthen their thermal...
International audienceWe compare, by in situ annealing of carbon nanofibres (CNFs) in the TEM, the c...
Motivated by recent in situ studies of carbon nanotube growth from large transition-metal nanopartic...
We present an extensive experimental study of the conditions under which Cu forms encapsulated islan...
In cast iron, graphite develops in conjunction with the metallic matrix during solidification. The m...