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Medicine within the College of Community Health Sciences (CCHS), has an exciting opportunity to join The Drug Research and Engineering for Advanced Medicine (DREAM) lab (https://sites.ua.edu/dreamlab
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characterization of lipid nanoparticles (LNPs) for mRNA delivery is essential. Proficiency in relevant analytical techniques: dynamic light scattering, surface charge measurement and assays for encapsulation/loading
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conversion and storage devices, with particular emphasis on in situ exsolution processes of catalytically active nanoparticles. The candidate should hold a Master’s degree and have experience in conducting
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Medicine within the College of Community Health Sciences (CCHS), has an exciting opportunity to join The Drug Research and Engineering for Advanced Medicine (DREAM) lab (https://sites.ua.edu/dreamlab
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concepts associated with the research plan to be developed; and demonstrate a strong focus on achieving results. Experience in the synthesis and characterization of biogenic metal nanoparticles will be
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analyze electrochemical oxidation/reduction studies to validate drug-dependent or biomarker-dependent electron transfer and sensor response. • Synthesize and characterize nanoparticles of various
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. The perturbation will initially be a dielectric nanoparticle. If sufficiently large sensitivities are realized, we will consider a single absorbing molecule. The cavities will be driven by a
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nanoparticles for induction-assisted regeneration, and fabrication of structured adsorbent geometries using advanced manufacturing techniques. The student will investigate how structural design, porosity, and
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using cryo-EM/cryo-ET and aid in the design of novel viral vectors involving human adenoviruses and other viral nanoparticles. These vaccines can be customized for use against the infectious diseases and
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of plasmonic materials, namely thin films containing plasmonic nanoparticles (NPs) of noble metals embedded in a dielectric matrix, with graphene or graphene quantum dots. These materials enable