Laylan B. Hassan
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Also affiliated: University of Duhok (2022–2026)
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Biography and Research Information
OverviewAI-generated summary
Laylan B. Hassan's research focuses on the fabrication and application of nanostructured surfaces, particularly for wettability control and antibacterial properties. Hassan has investigated methods for creating hierarchically rough superhydrophobic surfaces on various metals, including copper and aluminum, utilizing techniques such as sandblasting and hot water treatment. These surfaces have demonstrated potential for applications like enhanced dropwise condensation and efficient oil-water separation. Additionally, Hassan's work includes the growth of zinc oxide nanowires via hot water deposition. Hassan has 11 publications with 222 citations and an h-index of 6. Key collaborators include Tansel Karabacak and Nawzat S. Saadi from the University of Arkansas at Little Rock.
Metrics
- h-index: 6
- Publications: 11
- Citations: 222
Selected Publications
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Fabrication of robust and durable superamphiphobic aluminum alloy and zinc surfaces via dual sandblasting and steam treatment (2025)
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Scalable and durable superhydrophobic-superoleophilic nanostructured zinc-coated steel wool for efficient oil-water separation (2025)
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Enhanced dropwise condensation using superhydrophobic surfaces with hierarchical roughness: A scalable and eco-friendly approach (2025)
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Hierarchically rough superhydrophobic metal surfaces fabricated by a sandblasting and hot water treatment process (2025)
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Growth of zinc oxide nanowires by a hot water deposition method (2024)
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Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment * (2021)
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Special wettable nanostructured copper mesh achieved by a facile hot water treatment process (2017)
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Metal oxide nanostructures by a simple hot water treatment (2017)
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Hierarchically rough superhydrophobic copper sheets fabricated by a sandblasting and hot water treatment process (2017)
Collaboration Network
Top Collaborators
- Metal oxide nanostructures by a simple hot water treatment
- Hierarchically rough superhydrophobic copper sheets fabricated by a sandblasting and hot water treatment process
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Hierarchically rough superhydrophobic metal surfaces fabricated by a sandblasting and hot water treatment process
- Special wettable nanostructured copper mesh achieved by a facile hot water treatment process
Showing 5 of 9 shared publications
- Metal oxide nanostructures by a simple hot water treatment
- Hierarchically rough superhydrophobic copper sheets fabricated by a sandblasting and hot water treatment process
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Hierarchically rough superhydrophobic metal surfaces fabricated by a sandblasting and hot water treatment process
- Special wettable nanostructured copper mesh achieved by a facile hot water treatment process
Showing 5 of 9 shared publications
- Special wettable nanostructured copper mesh achieved by a facile hot water treatment process
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment *
- Growth of zinc oxide nanowires by a hot water deposition method
- Growth of zinc oxide nanowires by a hot water deposition method
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