International audienceWhile graphene has held the center stage in nanocarbon material research since its isolation in 2004, less attention has been paid to nanometer-thick carbon films in which at least part of the carbon atoms are sp 3-hybridized, whatever the crystallographic structure. However, because of their composition, structure, physical and chemical properties, those nanomaterials exhibit competitive features that should be considered for the development of future sustainable technologies based on 2D materials. The purpose of this review is to provide a snapshot of the main advances in the synthesis of sub-10 nm thick sp 3-C-rich films, which include amorphous carbon hydrogenated or not, nanocrystalline diamond films, graphane, di...
In spite of the versatility of electronic properties of graphene, its fragility and low resistance t...
The design and production of innovative materials based on nanocrystalline sp(2)- and sp(3)-coordina...
The search for new nanostructural topologies composed of elemental carbon is driven by technological...
International audienceWhile graphene has held the center stage in nanocarbon material research since...
International audienceNanosized and crystalline sp3-bonded carbon materials were prepared over large...
Carbon materials are distinguished by their unusual variety of structures. They allow the realizatio...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Diamond-like carbon films, amorphous hydrogenated or non-hydrogenated forms of carbon, are metastabl...
International audienceNanometer-thick and crystalline sp3-bonded carbon sheets are promising new wid...
Carbon nanomaterials with a different character of the chemical bond—graphene (sp2) and nanodiamond ...
Carbon is the fifteenth most abundant element in Earth's crust, and the fourth most abundant element...
The search for new nanostructural topologies composed of elemental carbon is driven by technological...
Through a combinatorial approach involving experimental measurement and plasma modelling, it is show...
Amorphous carbon with/without hydrogen (a-C:H/a-C), Diamond like carbon (DLC) films have been explor...
Amorphous carbon has a wide range of properties that are primarily controlled by the different bond ...
In spite of the versatility of electronic properties of graphene, its fragility and low resistance t...
The design and production of innovative materials based on nanocrystalline sp(2)- and sp(3)-coordina...
The search for new nanostructural topologies composed of elemental carbon is driven by technological...
International audienceWhile graphene has held the center stage in nanocarbon material research since...
International audienceNanosized and crystalline sp3-bonded carbon materials were prepared over large...
Carbon materials are distinguished by their unusual variety of structures. They allow the realizatio...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Diamond-like carbon films, amorphous hydrogenated or non-hydrogenated forms of carbon, are metastabl...
International audienceNanometer-thick and crystalline sp3-bonded carbon sheets are promising new wid...
Carbon nanomaterials with a different character of the chemical bond—graphene (sp2) and nanodiamond ...
Carbon is the fifteenth most abundant element in Earth's crust, and the fourth most abundant element...
The search for new nanostructural topologies composed of elemental carbon is driven by technological...
Through a combinatorial approach involving experimental measurement and plasma modelling, it is show...
Amorphous carbon with/without hydrogen (a-C:H/a-C), Diamond like carbon (DLC) films have been explor...
Amorphous carbon has a wide range of properties that are primarily controlled by the different bond ...
In spite of the versatility of electronic properties of graphene, its fragility and low resistance t...
The design and production of innovative materials based on nanocrystalline sp(2)- and sp(3)-coordina...
The search for new nanostructural topologies composed of elemental carbon is driven by technological...