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Paul Wynblatt's research has focused on Interfacial phenomena. His research has employed experimental, computer simulation, as well as analytical modeling approaches. His interests include segregation at surfaces, solid-solid interphase boundaries, and grain boundaries; Ostwald ripening; thermal stability of thin films; wetting behavior, including wetting transitions in liquid alloys, grain boundary wetting, and solid state wetting phenomena; equilibrium crystal shapes in pure metals and alloys; surface diffusion; and melting of nano-crystals.
Paul Wynblatt's research has focused on Interfacial phenomena. His research has employed experimental, computer simulation, as well as analytical modeling approaches. His interests include segregation at surfaces, solid-solid interphase boundaries, and grain boundaries; Ostwald ripening; thermal stability of thin films; wetting behavior, including wetting transitions in liquid alloys, grain boundary wetting, and solid state wetting phenomena; equilibrium crystal shapes in pure metals and alloys; surface diffusion; and melting of nano-crystals.
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Journal of Crystal Growth (2019): 24-33
Journal of Materials Scienceno. 16 (2017): 9630-9639
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