We report an antibacterial surface that kills airborne bacteria on contact upon minutes of solar near-infrared (NIR) irradiation. This antibacterial surface employs reduced graphene oxide (rGO), a well-known near-infrared photothermal conversion agent, as the photosensitizer and is prepared by assembling oppositely charged polyelectrolyte-stabilized rGO sheets (PEL-rGO) on a quartz substrate with the layer-by-layer (LBL) technique. Upon solar irradiation, the resulting PEL-rGO LBL multilayer efficiently generates rapid localized heating and, within minutes, kills >90% airborne bacteria, including antibiotic-tolerant persisters, on contact, likely by permeabilizing their cellular membranes. The observed activity is retained even when the PEL...
International audienceDespite the availability of different antibiotics, bacterial infections are st...
Amino-functionalized graphene oxide (GO-NH2) was prepared for enhanced antibacterial properties thro...
Here we reported the fabrication of an electrospun membrane based on a hyaluronic acid derivative (H...
The manuscript shows the application of unmodified graphene oxide (GO) as a photothermally susceptib...
Conventional antibiotic therapies are becoming less efficient due to the emergence of antibiotic-res...
We report an efficient and a simple synergistic antimicrobial therapy for lysing pathogenic E. coli ...
An antibacterial platform based on multifunctional reduced graphene oxide (rGO) that is responsive t...
Although the electronic properties of conducting films have been widely explored in optoelectronic f...
Bacterial infections are one of the leading causes of disease worldwide. Conventional antibiotics ar...
Background and objectives: Graphene oxide (GO) is a monolayer sheet of carbon with a thickness of 1 ...
peer reviewedBacterial infections are one of the leading causes of diseases worldwide. Conventional ...
Prevention of fouling on surfaces is a major challenge that broadly impacts society. Water treatment...
The steady increase of antimicrobial resistance of different pathogens requires the development of a...
The steady increase of antimicrobial resistance of different pathogens requires the development of a...
International audienceThe steady increase in antimicrobial resistance in different 16 pathogens requ...
International audienceDespite the availability of different antibiotics, bacterial infections are st...
Amino-functionalized graphene oxide (GO-NH2) was prepared for enhanced antibacterial properties thro...
Here we reported the fabrication of an electrospun membrane based on a hyaluronic acid derivative (H...
The manuscript shows the application of unmodified graphene oxide (GO) as a photothermally susceptib...
Conventional antibiotic therapies are becoming less efficient due to the emergence of antibiotic-res...
We report an efficient and a simple synergistic antimicrobial therapy for lysing pathogenic E. coli ...
An antibacterial platform based on multifunctional reduced graphene oxide (rGO) that is responsive t...
Although the electronic properties of conducting films have been widely explored in optoelectronic f...
Bacterial infections are one of the leading causes of disease worldwide. Conventional antibiotics ar...
Background and objectives: Graphene oxide (GO) is a monolayer sheet of carbon with a thickness of 1 ...
peer reviewedBacterial infections are one of the leading causes of diseases worldwide. Conventional ...
Prevention of fouling on surfaces is a major challenge that broadly impacts society. Water treatment...
The steady increase of antimicrobial resistance of different pathogens requires the development of a...
The steady increase of antimicrobial resistance of different pathogens requires the development of a...
International audienceThe steady increase in antimicrobial resistance in different 16 pathogens requ...
International audienceDespite the availability of different antibiotics, bacterial infections are st...
Amino-functionalized graphene oxide (GO-NH2) was prepared for enhanced antibacterial properties thro...
Here we reported the fabrication of an electrospun membrane based on a hyaluronic acid derivative (H...