Chemically doped graphene materials are fascinating because these have different desirable attributes with possible synergy. The inert and gapless nature of graphene can be changed by adding a small number of heteroatoms to substitute carbon in the lattice. The doped material may display superior catalytic activities; durable, fast, and selective sensing; improved magnetic moments; photoresponses; and activity in chemical reactions. In the current review, recent advances are covered in chemically doped graphene. First, the different types of heteroatoms, their bonding configurations, and briefly their properties are discussed. This is followed by the description of various synthesis and analytical methods essential for assessing the charact...
Graphene has astounding aptitudes owing to its unique band structure characteristics outlining its e...
Because of its novel molecular 2D structure and momentous physicochemical properties, graphene has b...
Graphene is a two-dimensional, one-atom-thick material made entirely of carbon atoms, arranged in a ...
Chemically doped graphene materials are fascinating because these have different desirable attribute...
Chemical doping of graphene becomes necessary to create a band gap which is useful for various appli...
[EN] Due to the availability and easy preparation, graphenes are currently under intense investigati...
Graphene was discovered half a decade ago and proved the existence of a two-dimensional system which...
Graphene is a single-atom-thick sheet of sp2 hybridized carbon atoms that are packed in a hexagonal ...
Interest in the development of graphene-based materials for advanced applications is growing, becaus...
The ‘graphene rush’ that started almost a decade ago is far from over. The dazzling properties of gr...
Carbon has a unique chemistry reflected in its wide presence in the inorganic and organic world - be...
This study concerns growth of graphene, a two dimensional material that is only one atom thick. This...
Graphene exhibits zero band gap, very small electrical resistivity, fast heat dissipation, and fast ...
Graphene, an sp2 hybridized single sheet of carbon atoms organized in a honeycomb lattice, is a zero...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
Graphene has astounding aptitudes owing to its unique band structure characteristics outlining its e...
Because of its novel molecular 2D structure and momentous physicochemical properties, graphene has b...
Graphene is a two-dimensional, one-atom-thick material made entirely of carbon atoms, arranged in a ...
Chemically doped graphene materials are fascinating because these have different desirable attribute...
Chemical doping of graphene becomes necessary to create a band gap which is useful for various appli...
[EN] Due to the availability and easy preparation, graphenes are currently under intense investigati...
Graphene was discovered half a decade ago and proved the existence of a two-dimensional system which...
Graphene is a single-atom-thick sheet of sp2 hybridized carbon atoms that are packed in a hexagonal ...
Interest in the development of graphene-based materials for advanced applications is growing, becaus...
The ‘graphene rush’ that started almost a decade ago is far from over. The dazzling properties of gr...
Carbon has a unique chemistry reflected in its wide presence in the inorganic and organic world - be...
This study concerns growth of graphene, a two dimensional material that is only one atom thick. This...
Graphene exhibits zero band gap, very small electrical resistivity, fast heat dissipation, and fast ...
Graphene, an sp2 hybridized single sheet of carbon atoms organized in a honeycomb lattice, is a zero...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
Graphene has astounding aptitudes owing to its unique band structure characteristics outlining its e...
Because of its novel molecular 2D structure and momentous physicochemical properties, graphene has b...
Graphene is a two-dimensional, one-atom-thick material made entirely of carbon atoms, arranged in a ...