Nonbond interactions between graphene nanosheets and polymers: a computational study

nano Online ◽  
2016 ◽  
Author(s):  
Yong-Fang Mo ◽  
Chuan-Lu Yang ◽  
Yan-Fei Xing ◽  
Mei-Shan Wang ◽  
Xiao-Guang Ma
e-Polymers ◽  
2014 ◽  
Vol 14 (3) ◽  
pp. 169-176 ◽  
Author(s):  
Yong-Fang Mo ◽  
Chuan-Lu Yang ◽  
Yan-Fei Xing ◽  
Mei-Shan Wang ◽  
Xiao-Guang Ma

AbstractBased on the geometries from molecular dynamics simulations and a package compiled by us, the interactions between graphene nanosheet (GNS) and nine types of flexible polymers have been investigated with force field. Both the van der Waals (vdW) interaction and the electrostatic interaction (EI) for two same polymer chains and between a polymer and a GNS were calculated and compared. The effect of cut-off distance was explored. It was found that the cut-off distance plays a significant role in EI energy, but a less important role in vdW energy when the cut-off distance is over 9.5 Å. The reasonable cut-off distances for EI and vdW interactions for simulation are suggested.


Crystals ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 1019
Author(s):  
Mansoor H. Alshehri

The adsorption characteristics and moving through nanopores of a single-stranded deoxyribonucleic acid (ssDNA) molecule on monolayers, such ashexagonal boron nitride and graphene nanosheets, were studied using the continuous approach with the 6–12 Lennard–Jones potential function. The ssDNA molecule is assumed to be at a distance l above the sheet, and the relation between the minimum energy location and the perpendicular distance of the ssDNA molecule from the nanosheet surface is found. In addition, by assuming that there is a hole in the surface of the nanosheet as a pore, the interaction energies for the ssDNA molecule moving through the pore in the surface of the nanosheet (used to calculate the radius p of the hole) are obtained, which provides the minimum energies. Furthermore, a comparative study with graphene was performed in order to compare with hexagonal boron nitride nanosheets. Our results indicate that the binding energies of the ssDNA onto graphene and hexagonal boron nitride nanosheets are approximately 15.488 and 17.582 (kcal/mol), corresponding to perpendicular distances of l=20.271 and l=20.231 Å, respectively. In addition, we observe that the ssDNA molecule passes through graphene and hexagonal boron nitride nanopores when the gap radius p>7.5 Å. Our results provide critical insights to understand and develop the interactions and translocation of DNA molecules with and through nanosheets.


2015 ◽  
Vol 3 (14) ◽  
pp. 3416-3421 ◽  
Author(s):  
Feng Li ◽  
Yafei Li

The electronic properties of hydrofluorinated graphene nanosheets can be efficiently modified by interlayer C–H⋯F–C hydrogen bonding.


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