Oxidative and membrane stress-mediated antibacterial activity of WS2 and rGO-WS2 nanosheets
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Summary
The antimicrobial mechanism is due to the combined effect of initial cell deposition on the rGO-WS2 materials, the membrane stress due to direct contact with the nanosheets, and the produced superoxide anion-independent oxidation mechanisms.
- Type
- article
- Published
- 2015-09-02
- Cited by
- 67
- References
- 43
- OpenAlex
- https://openalex.org/W1783576552
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:83512799
Keywords
Graphene, Tungsten oxide, Tungsten, Oxide, Antibacterial activity
References
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Cited by
- Two-Dimensional Materials for Antimicrobial Applications: Graphene Materials and Beyond.
- Highly Transparent Wafer-Scale Synthesis of Crystalline WS2 Nanoparticle Thin Film for Photodetector and Humidity-Sensing Applications.
- Stereoselective quenching of cedryl carbocation in epicedrol biosynthesis
- The Antibacterial Applications of Graphene and Its Derivatives.
- Molybdenum oxide-mediated facile aliphatic nucleophilic fluorination
- Antibacterial Activities of Graphene Oxide-Molybdenum Disulfide Nanocomposite Films.
- Membrane destruction-mediated antibacterial activity of tungsten disulfide (WS2)
- Antimicrobial carbon nanospheres.
- Green-fuel-mediated synthesis of self-assembled NiO nano-sticks for dual applications—photocatalytic activity on Rose Bengal dye and antimicrobial action on bacterial strains
- Environmental‐Friendly Assembly of Functional Graphene Hydrogels with Excellent Antibacterial Properties
- Removal of endrin and dieldrin isomeric pesticides through stereoselective adsorption behavior on the graphene oxide-magnetic nanoparticles
- Magnetic g-C3N4 nanocomposite-catalyzed environmentally benign aminolysis of epoxide
- Effect of UV Irradiation and Heat Treatment on the Surface Potential Distribution of Monolayer WS2 on SiO2/Si and Au Substrates
- Reduced graphene oxide and ZnO decorated graphene for biomedical applications
- Recent advances in the field of transition metal dichalcogenides for biomedical applications.
- Membrane destruction and phospholipid extraction by using two-dimensional MoS2 nanosheets.
- Graphene oxide and carbon dots as broad-spectrum antimicrobial agents - a minireview.
- Water-Based Black Phosphorus Hybrid Nanosheets as a Moldable Platform for Wound Healing Applications.
- Rapid and greener method for utilization of Plaster of Paris (POP) waste generated from biomedical samples
- Biological interactions of biocompatible and water-dispersed MoS2 nanosheets with bacteria and human cells
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