
doi: 10.1039/d4nr02810d
pmid: 39171440
We demonstrate that after anchoring at the surface of silicone, carbon nanomaterials exhibit antibacterial activity against Gram+ or Gram− bacteria depending on their surface chemistry.
Staphylococcus aureus, Surface Properties, Silicones, 530, Antiviral Agents, Anti-Infective Agents, Humans, [SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/Biomaterials, [SDV.MP] Life Sciences [q-bio]/Microbiology and Parasitology, [CHIM.MATE] Chemical Sciences/Material chemistry, carbon nanotubes, Nanotubes, Carbon, SARS-CoV-2, graphene, COVID-19, [CHIM.MATE]Chemical Sciences/Material chemistry, antiviral, 620, Anti-Bacterial Agents, Nanostructures, [SDV.IB.BIO] Life Sciences [q-bio]/Bioengineering/Biomaterials, antibacterial, [SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitology, Pseudomonas aeruginosa, graphene oxide, Carbon nanomaterials, Graphite
Staphylococcus aureus, Surface Properties, Silicones, 530, Antiviral Agents, Anti-Infective Agents, Humans, [SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/Biomaterials, [SDV.MP] Life Sciences [q-bio]/Microbiology and Parasitology, [CHIM.MATE] Chemical Sciences/Material chemistry, carbon nanotubes, Nanotubes, Carbon, SARS-CoV-2, graphene, COVID-19, [CHIM.MATE]Chemical Sciences/Material chemistry, antiviral, 620, Anti-Bacterial Agents, Nanostructures, [SDV.IB.BIO] Life Sciences [q-bio]/Bioengineering/Biomaterials, antibacterial, [SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitology, Pseudomonas aeruginosa, graphene oxide, Carbon nanomaterials, Graphite
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