As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to their physical mechanisms of action which ensure less chance of development of microbial resistance. However, the fundamental question as to whether the antibacterial mechanism of GMs originates from parallel interaction or perpendicular interaction, or from a combination of these, remains poorly understood. Here, we show both experimentally and theoretically that GMs with high surface oxygen content (SOC) predominantly attach in parallel to the bacterial cell surface when in the suspension phase. The interaction mode shifts to perpendicular interaction when the SOC reaches a threshold of similar to 0.3 (the atomic percent of O in the total a...
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. A...
Healthy and environmental issues are the most concerned issues around the globe. Graphene-oxide (GO)...
Graphene oxide (GO) is a promising material for the development of antimicrobial surfaces due to its...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
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...
Graphene oxide (GO) is a promising precursor to produce graphene-family nanomaterials for various ap...
Graphene oxide (GO) is a promising precursor to produce graphene-family nanomaterials for various ap...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
Duo to their superior physicochemical properties, graphene and its derivatives (GDs), such as graphe...
Graphene oxide (GO) is a promising and remarkable nanomaterial that exhibits antimicrobial activity ...
There are significant controversies on the antibacterial properties of graphene oxide (GO): GO was r...
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. A...
Healthy and environmental issues are the most concerned issues around the globe. Graphene-oxide (GO)...
Graphene oxide (GO) is a promising material for the development of antimicrobial surfaces due to its...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
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...
Graphene oxide (GO) is a promising precursor to produce graphene-family nanomaterials for various ap...
Graphene oxide (GO) is a promising precursor to produce graphene-family nanomaterials for various ap...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
Duo to their superior physicochemical properties, graphene and its derivatives (GDs), such as graphe...
Graphene oxide (GO) is a promising and remarkable nanomaterial that exhibits antimicrobial activity ...
There are significant controversies on the antibacterial properties of graphene oxide (GO): GO was r...
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. A...
Healthy and environmental issues are the most concerned issues around the globe. Graphene-oxide (GO)...
Graphene oxide (GO) is a promising material for the development of antimicrobial surfaces due to its...