In this work, we have studied interactions of nucleobases and aromatic amino acids with graphene (G) and graphene oxide (GO) flakes by ab initio density functional theory (DFT). It is evident from the results that GO complexes are stabilized by hydrogen bonding interactions whereas G complexes are stabilized by π–π interactions, leading to enhanced binding energies for GO complexes compared to G complexes. Moreover, time-dependent DFT (TD-DFT) calculations for the optical properties reveal that the GO nanoflakes and GO–nucleobase composite absorb visible light in the range of 400–700 nm, which may be useful for light-emitting devices. The insights obtained from our study will be useful to understand the role of GO flakes as carriers in targ...
Graphane has emerged as a two-dimensional hydrocarbon with interesting physical properties and poten...
We report the results of our investigation on the interaction of nucleic acid bases bases with graph...
In recent years, Graphene Oxide (GO) and its derivatives have attracted significant attention owing ...
This study investigated the interaction between carbon nanostructures, including pristine graphene, ...
The interaction between graphene-based nanomaterials and modified nucleobases (MBs) is important in ...
The interaction between graphene-based nanomaterials and modified nucleobases (MBs) is important in ...
We report the results of our first-principles investigation on the interaction of the nucleobases ad...
The physisorption of the nucleobases adenine (A), cytosine (C), guanine (G), thymine (T), and uracil...
The interaction of nucleobases (NBs) with the surface of silicon doped graphene (SiGr) and defective...
The physisorption of the nucleobases adenine (A), cytosine (C), guanine (G), thymine (T), and uracil...
In this study, the interaction thioguanine (TG) anticancer drug with the functionalized graphene oxi...
Graphene and its water-soluble derivative, graphene oxide (GO), have attracted huge attention becaus...
We applied plane-wave density functional theory to study the effects of chemical functionalizations ...
As novel applied nanomaterials, both graphene oxide (GO) and its reduced form (rGO) have attracted g...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
Graphane has emerged as a two-dimensional hydrocarbon with interesting physical properties and poten...
We report the results of our investigation on the interaction of nucleic acid bases bases with graph...
In recent years, Graphene Oxide (GO) and its derivatives have attracted significant attention owing ...
This study investigated the interaction between carbon nanostructures, including pristine graphene, ...
The interaction between graphene-based nanomaterials and modified nucleobases (MBs) is important in ...
The interaction between graphene-based nanomaterials and modified nucleobases (MBs) is important in ...
We report the results of our first-principles investigation on the interaction of the nucleobases ad...
The physisorption of the nucleobases adenine (A), cytosine (C), guanine (G), thymine (T), and uracil...
The interaction of nucleobases (NBs) with the surface of silicon doped graphene (SiGr) and defective...
The physisorption of the nucleobases adenine (A), cytosine (C), guanine (G), thymine (T), and uracil...
In this study, the interaction thioguanine (TG) anticancer drug with the functionalized graphene oxi...
Graphene and its water-soluble derivative, graphene oxide (GO), have attracted huge attention becaus...
We applied plane-wave density functional theory to study the effects of chemical functionalizations ...
As novel applied nanomaterials, both graphene oxide (GO) and its reduced form (rGO) have attracted g...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
Graphane has emerged as a two-dimensional hydrocarbon with interesting physical properties and poten...
We report the results of our investigation on the interaction of nucleic acid bases bases with graph...
In recent years, Graphene Oxide (GO) and its derivatives have attracted significant attention owing ...