Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Blessing I. Hammer investigates the antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces. Their work includes the development of novel core-shell CuO nanostructures, which have been explored for applications such as binder-free supercapacitor electrodes. Hammer has also studied the durability of metal oxide nanostructures synthesized via hot water treatment and explored photo-induced hot water treatment for synthesizing metal oxide nanostructures.
Hammer's research network includes collaborations with Tansel Karabacak and Alena V. Savenka, with whom they have co-authored multiple publications. They have published five total publications with an h-index of 2 and 13 total citations. Hammer's recent activity indicates ongoing research in this field.
Metrics
- h-index: 2
- Publications: 6
- Citations: 13
Selected Publications
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Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures (2026)
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Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces (2026)
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Novel core–shell CuO nanostructures grown on Cu powder particles by hot water treatment for binder-free supercapacitor electrodes (2025)
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Durability of metal oxide nanostructures synthesized by hot water treatment (2024)
Collaboration Network
Top Collaborators
- Durability of metal oxide nanostructures synthesized by hot water treatment
- Novel core–shell CuO nanostructures grown on Cu powder particles by hot water treatment for binder-free supercapacitor electrodes
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
- Durability of metal oxide nanostructures synthesized by hot water treatment
- Novel core–shell CuO nanostructures grown on Cu powder particles by hot water treatment for binder-free supercapacitor electrodes
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
- Durability of metal oxide nanostructures synthesized by hot water treatment
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
- Durability of metal oxide nanostructures synthesized by hot water treatment
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
- Novel core–shell CuO nanostructures grown on Cu powder particles by hot water treatment for binder-free supercapacitor electrodes
- Novel core–shell CuO nanostructures grown on Cu powder particles by hot water treatment for binder-free supercapacitor electrodes
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Antibacterial efficacy and adaptive proteomic strategies of antibiotic-resistant pathogens on nanostructured copper surfaces
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
- Photo-Induced Hot Water Treatment for the Synthesis of Metal Oxide Nanostructures
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