While the antibacterial properties of graphene oxide (GO) have been demonstrated across a spectrum of bacteria, the critical role of functional groups is unclear. To address this important issue, we utilized reduction and hydration methods to establish a GO library with different oxidation, hydroxyl, and carbon radical (•C) levels that can be used to study the impact on antibacterial activity. Using antibiotic-resistant bacteria as a test platform, we found that the •C density is most proximately associated with bacterial killing. Accordingly, hydrated GO (hGO), with the highest •C density, had the strongest antibacterial effects through membrane binding and induction of lipid peroxidation. To explore its potential applications, we demonstr...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
Introduction: The clinical challenge that research on antibacterial coatings faces nowadays is the n...
Antimicrobial coating on biomedical devices to prevent bacterial colonization is of great interest i...
While the antibacterial properties of graphene oxide (GO) have been demonstrated across a spectrum o...
Past research revealed the antibacterial behavior of nanocarbons. However, the mechanisms of nanocar...
There are significant controversies on the antibacterial properties of graphene oxide (GO): GO was r...
Sangiliyandi Gurunathan, Jae Woong Han, Ahmed Abdal Dayem, Vasuki Eppakayala, Jin-Hoi KimDepartment ...
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. A...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
Graphene oxide (GO) is sp2 bonded carbonaceous antibacterial substance acting by surface contact. He...
Graphene oxide (GO) is a promising and remarkable nanomaterial that exhibits antimicrobial activity ...
Duo to their superior physicochemical properties, graphene and its derivatives (GDs), such as graphe...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
Healthy and environmental issues are the most concerned issues around the globe. Graphene-oxide (GO)...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
Introduction: The clinical challenge that research on antibacterial coatings faces nowadays is the n...
Antimicrobial coating on biomedical devices to prevent bacterial colonization is of great interest i...
While the antibacterial properties of graphene oxide (GO) have been demonstrated across a spectrum o...
Past research revealed the antibacterial behavior of nanocarbons. However, the mechanisms of nanocar...
There are significant controversies on the antibacterial properties of graphene oxide (GO): GO was r...
Sangiliyandi Gurunathan, Jae Woong Han, Ahmed Abdal Dayem, Vasuki Eppakayala, Jin-Hoi KimDepartment ...
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. A...
Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptiona...
As antimicrobials, graphene materials (GMs) may have advantages over traditional antibiotics due to ...
Graphene oxide (GO) is sp2 bonded carbonaceous antibacterial substance acting by surface contact. He...
Graphene oxide (GO) is a promising and remarkable nanomaterial that exhibits antimicrobial activity ...
Duo to their superior physicochemical properties, graphene and its derivatives (GDs), such as graphe...
The development of new pharmacological strategies that evade bacterial resistance has become a compe...
Healthy and environmental issues are the most concerned issues around the globe. Graphene-oxide (GO)...
The increasing biological use of graphene-based materials has prompted research inquiries on their e...
Introduction: The clinical challenge that research on antibacterial coatings faces nowadays is the n...
Antimicrobial coating on biomedical devices to prevent bacterial colonization is of great interest i...