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Correlative characterization across structural, spectroscopic, and transport techniques Stability studies, stress testing, and degradation analysis in thin films Mentoring students and contributing to shared
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. The successful candidate will investigate the mechanisms underlying these differences in stability using a combination of genomics, transcriptomics, cytogenetics, recombination analysis, and phenotyping
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We are seeking a Postdoctoral Research Associate to lead an experimental research program in the area of composite materials and structural integrity. The successful candidate will be responsible
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, processing optimization, and experimental troubleshooting Materials characterization using techniques such as GIWAXS, Raman, FTIR, UV-vis, and electrical transport measurements Understanding structure-property
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, materials science, and industrially relevant processing. The candidate will lead efforts to understand structure–rheology–processability relationships, specifically focusing on interfacial phenomena
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functional materials toward energy/electronic devices that deliver reliable performance under demanding, real-world conditions. The group is led by Prof. Husam N. Alshareef (Ibn Alhaytham Distinguished
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integrating CQD thin films with metasurfaces, optical cavities, plasmonic resonators, and other light-management structures. Develop high-performance SWIR CQD photodetectors using III–V CQDs and related
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. Develop sensing principles, data acquisition, and measurement systems. Upscale technology and validate its integration into a variety of structures, including structures for mobility, energy, and civil
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configurations in Energy applications. Lead the development of a unique experimental platform for in-situ characterization under environmental loading of laminated structures. Plan and execute research tasks
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macroscopic response: Toughing mechanism using surface on involume spatial variations. Structural health monitoring (SHM) and smart structures for composite infrastructures: Wireless surface gauges and