The mechanisms of cellular growth have attracted scientists’ attention for a long time, leading to recent efforts in establishing cellular growth on specific functionalized substrates. In order to fully understand the supported cellular growth mechanisms, one needs first to comprehend how individual amino acids interact with the substrate material as cells are known to attach to surfaces through specific proteins designed to improve adhesion. In this study, we have considered graphene as a candidate material for support-assisted cellular growth and simulated the interaction of all 20 naturally occurring amino acids deposited on graphene. Investigations utilized classical molecular dynamics (MD) for amino acids in aqueous solution and in vac...
Peptide binding to a graphene sheet is studied by a coarse-grained approach. All-atom molecular dyna...
We researched the interaction between six representative carbon-based nanoparticles (CBNs) and 20 st...
Molecular dynamics were used to simulate the dispersion of graphene in aqueous medium in the presenc...
Investigation of the non-covalent interaction of biomolecules with aqueous graphene interfaces is a ...
Controlled self-assembly of biomolecules on graphene offers a pathway for realizing its full potenti...
To fully harness the enormous potential offered by interfaces between graphitic nanostructures and b...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
We compare the free energies of adsorption (∆Aads) and the structural preferences of amino acids ...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
Atomic-scale molecular dynamics computer simulations are used to probe the structure, dynamics, and ...
Knowing the nature of the enzyme-graphene interface is critical for a design of graphene-based biose...
The knowledge on the conformations of amino acids is essential to understand the biochemical behavio...
We report a new Quantum Mechanical/Molecular Dynamics (QM/MD) simulation loop to model the coupling ...
Noncovalent functionalization of graphene using peptides is a promising method for producing novel s...
We used AFM to investigate the interaction of polyelectrolytes such as ssDNA and dsDNA molecules wit...
Peptide binding to a graphene sheet is studied by a coarse-grained approach. All-atom molecular dyna...
We researched the interaction between six representative carbon-based nanoparticles (CBNs) and 20 st...
Molecular dynamics were used to simulate the dispersion of graphene in aqueous medium in the presenc...
Investigation of the non-covalent interaction of biomolecules with aqueous graphene interfaces is a ...
Controlled self-assembly of biomolecules on graphene offers a pathway for realizing its full potenti...
To fully harness the enormous potential offered by interfaces between graphitic nanostructures and b...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
We compare the free energies of adsorption (∆Aads) and the structural preferences of amino acids ...
Graphene-based nanomaterials (GBNMs) [graphene oxide (GO), reduced graphene oxide (rGO), and graphen...
Atomic-scale molecular dynamics computer simulations are used to probe the structure, dynamics, and ...
Knowing the nature of the enzyme-graphene interface is critical for a design of graphene-based biose...
The knowledge on the conformations of amino acids is essential to understand the biochemical behavio...
We report a new Quantum Mechanical/Molecular Dynamics (QM/MD) simulation loop to model the coupling ...
Noncovalent functionalization of graphene using peptides is a promising method for producing novel s...
We used AFM to investigate the interaction of polyelectrolytes such as ssDNA and dsDNA molecules wit...
Peptide binding to a graphene sheet is studied by a coarse-grained approach. All-atom molecular dyna...
We researched the interaction between six representative carbon-based nanoparticles (CBNs) and 20 st...
Molecular dynamics were used to simulate the dispersion of graphene in aqueous medium in the presenc...