Pristine graphene, its derivatives, and composites have been widely reported to possess antibacterial properties. Most of the studies simulating the interaction between bacterial cell membranes and the surface of graphene have proposed that the graphene-induced bacterial cell death is caused either by (1) the insertion of blade-like graphene-based nanosheets or (2) the destructive extraction of lipid molecules by the presence of the lipophilic graphene. These simulation studies have, however, only take into account graphene–cell membrane interactions where the graphene is in a dispersed form. In this paper, we report the antimicrobial behavior of graphene sheet surfaces in an attempt to further advance the current knowledge pertaining...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
The antibacterial activity of graphene nanostructures (GrNs) on glass (G) and nickel (Ni) substrates...
Pristine graphene, its derivatives, and composites have been widely reported to possess antibacteria...
Pristine graphene, its derivatives, and composites have been widely reported to possess antibacteria...
Growing interest in the bactericidal effect of graphene and graphene-derived nanomaterials has led t...
Although graphene-based materials (GBMs) have been thoroughly explored, their use in antimicrobial s...
Due to its unique, unanimously recognized properties and biocompatibility, graphene has wide potenti...
Biofouling is an inevitable obstacle that impairs the overall performance of polymeric membranes, in...
The key first step in developing bacterial infections related to implants and medical devices is the...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
© The Royal Society of Chemistry. Biofouling is an inevitable obstacle that impairs the overall perf...
The exploitation of nanomaterials with antimicrobial properties has attracted an ever-growing intere...
Graphene-based materials are found as excellent resources and employed as efficient anti-microbial a...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
The antibacterial activity of graphene nanostructures (GrNs) on glass (G) and nickel (Ni) substrates...
Pristine graphene, its derivatives, and composites have been widely reported to possess antibacteria...
Pristine graphene, its derivatives, and composites have been widely reported to possess antibacteria...
Growing interest in the bactericidal effect of graphene and graphene-derived nanomaterials has led t...
Although graphene-based materials (GBMs) have been thoroughly explored, their use in antimicrobial s...
Due to its unique, unanimously recognized properties and biocompatibility, graphene has wide potenti...
Biofouling is an inevitable obstacle that impairs the overall performance of polymeric membranes, in...
The key first step in developing bacterial infections related to implants and medical devices is the...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
© The Royal Society of Chemistry. Biofouling is an inevitable obstacle that impairs the overall perf...
The exploitation of nanomaterials with antimicrobial properties has attracted an ever-growing intere...
Graphene-based materials are found as excellent resources and employed as efficient anti-microbial a...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
The antibacterial activity of graphene nanostructures (GrNs) on glass (G) and nickel (Ni) substrates...