The interactions of various acyclic and cyclic hydrocarbons in both saturated and unsaturated forms with the carbon nanostructures (CNSs) have been explored by using density functional theory (DFT) calculations. Model systems representing armchair and zigzag carbon nanotubes (CNTs) and graphene have been considered to investigate the effect of chirality and curvature of the CNSs toward these interactions. Results of this study reveal contrasting binding nature of the acyclic and cyclic hydrocarbons toward CNSs. While the saturated molecules show stronger binding affinity in acyclic hydrocarbons; the unsaturated molecules exhibit higher binding affinity in cyclic hydrocarbons. In addition, acyclic hydrocarbons exhibit stronger binding affini...
Understanding the nature of nonbonded interactions on the graphene surface is a problem of outstandi...
We theoretically study, by means of dispersion-corrected and cost-effective methods, the strength of...
Many applications of carbon nanotubes require their chemical functionalization. Both covalent and su...
The potential application of carbon nanomaterials in biology and medicine increases the necessity to...
Understanding noncovalent interactions on the surfaces of carbon nanostructures (CNSs) is of fundame...
Molecular modeling is a powerful tool to better understand the intermolecular interactions of carbon...
We investigated noncovalent molecular adsorptions onto carbon nanotubes (CNTs), using density-functi...
In this critical review we survey non-covalent interactions of carbon nanotubes with molecular speci...
We applied plane-wave density functional theory to study the effects of chemical functionalizations ...
Quantum-chemical calculations of the association of metal free, cobalt, copper and zinc phthalocyani...
The magnitude and nature of interactions between small aromatic systems (benzene and naphthalene) an...
Carbonaceous materials are a promising class of materials for potential application as chemical and ...
Theoretical methods were used to make single-walled carbon nanotube fragments (SWCNTFs) from a graph...
The interaction between carbon nanotubes and organic molecules including benzene ( C 6 H 6 ), cycloh...
Quantum chemical calculations reveal that the binding energy of the carbon nanotube (CNT) and DNA/RN...
Understanding the nature of nonbonded interactions on the graphene surface is a problem of outstandi...
We theoretically study, by means of dispersion-corrected and cost-effective methods, the strength of...
Many applications of carbon nanotubes require their chemical functionalization. Both covalent and su...
The potential application of carbon nanomaterials in biology and medicine increases the necessity to...
Understanding noncovalent interactions on the surfaces of carbon nanostructures (CNSs) is of fundame...
Molecular modeling is a powerful tool to better understand the intermolecular interactions of carbon...
We investigated noncovalent molecular adsorptions onto carbon nanotubes (CNTs), using density-functi...
In this critical review we survey non-covalent interactions of carbon nanotubes with molecular speci...
We applied plane-wave density functional theory to study the effects of chemical functionalizations ...
Quantum-chemical calculations of the association of metal free, cobalt, copper and zinc phthalocyani...
The magnitude and nature of interactions between small aromatic systems (benzene and naphthalene) an...
Carbonaceous materials are a promising class of materials for potential application as chemical and ...
Theoretical methods were used to make single-walled carbon nanotube fragments (SWCNTFs) from a graph...
The interaction between carbon nanotubes and organic molecules including benzene ( C 6 H 6 ), cycloh...
Quantum chemical calculations reveal that the binding energy of the carbon nanotube (CNT) and DNA/RN...
Understanding the nature of nonbonded interactions on the graphene surface is a problem of outstandi...
We theoretically study, by means of dispersion-corrected and cost-effective methods, the strength of...
Many applications of carbon nanotubes require their chemical functionalization. Both covalent and su...