Mariam Temitope Badmus
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Research Areas
Biography and Research Information
OverviewAI-generated summary
Mariam Temitope Badmus's research focuses on materials science, specifically investigating nanoparticle-enhanced metal alloys. Her work explores advances in microstructural control and the resulting mechanical performance of these materials, with an eye toward future prospects. Badmus also studies the application of surface-sensitive spectroscopic and structural characterization techniques for both low-dimensional and three-dimensional materials. This includes examining the principles, advancements, and applications of these methods, contributing to a deeper understanding of material properties at the nanoscale and macroscale.
Metrics
- Publications: 2
Selected Publications
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Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications (2026)
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Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects (2026)
Collaboration Network
Top Collaborators
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
- Surface-sensitive spectroscopic and structural characterization techniques for low-dimensional and three-dimensional materials: Principles, advances, and applications
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