The scientific and technological potential of graphene's includes the development of light, open 3D hybrid structures with high surface area, tunable pore size and aromatic functionalities. Towards this aim, we describe a scalable and low-cost bottom-up approach that combines self-assembly and Langmuir-Schaefer deposition for the production of fullerene-intercalated graphene oxide hybrids. This method uses graphene oxide (GO) nanosheets as template for the attachment of two types of fullerene derivatives (bromo-fullerenes, C60Br24 and fullerols, C-60(OH)(24)) in a bi-dimensional arrangement, allowing a layerby-layer growth with control at nanoscale. Our film preparation approach relies on a bottom-up process that includes the formation of a...
Monolayer films of C60 fullerene were for the first time produced successfully by using the Langmuir...
Hexagonal close-packed monolayer films of unmodified C60 fullerene were, for the first time, produce...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
The scientific and technological potential of graphene's includes the development of light, open 3D ...
Much of the research effort on graphene focuses on its use as a building block for the development o...
The special electronic, optical, thermal, and mechanical properties of graphene resulting from its 2...
Low-dimensional assemblies, where order and organization follow supramolecular principles, have show...
Two new fullerene derivatives have been synthesized, which tend to form Langmuir monolayers. Robust ...
9siCellulose nanocrystals (CNCs) are renewable, sustainable and biocompatible nanomaterials, which h...
The effective synthesis and self-assembly of graphene oxide (GO) nanocomposites are of key importanc...
The integration of various low dimensional materials into large area, scalable, heterostructures is ...
Synthesis of graphene nanostructures has been investigated to provide outstanding properties for var...
Monolayer films of C60 fullerene were for the first time produced successfully by using the Langmuir...
Hexagonal close-packed monolayer films of unmodified C60 fullerene were, for the first time, produce...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
The scientific and technological potential of graphene's includes the development of light, open 3D ...
Much of the research effort on graphene focuses on its use as a building block for the development o...
The special electronic, optical, thermal, and mechanical properties of graphene resulting from its 2...
Low-dimensional assemblies, where order and organization follow supramolecular principles, have show...
Two new fullerene derivatives have been synthesized, which tend to form Langmuir monolayers. Robust ...
9siCellulose nanocrystals (CNCs) are renewable, sustainable and biocompatible nanomaterials, which h...
The effective synthesis and self-assembly of graphene oxide (GO) nanocomposites are of key importanc...
The integration of various low dimensional materials into large area, scalable, heterostructures is ...
Synthesis of graphene nanostructures has been investigated to provide outstanding properties for var...
Monolayer films of C60 fullerene were for the first time produced successfully by using the Langmuir...
Hexagonal close-packed monolayer films of unmodified C60 fullerene were, for the first time, produce...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...