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systems (surfactants, co-solvents, foam conformance) and complex suspensions (nanoparticles/aqueous stability) designed to unlock uncontacted oil in shale systems. Responsibilities Experimental Execution
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CuO nanoparticles. Experience with analytical techniques such as HPLC and GC. Experience in contaminant removal processes. Workplan and objectives to be achieved: Urea plays a fundamental role as a
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development of lipid nanoparticles (LNPs) for applications in both cancer therapy and the treatment of bacterial infections. The work will be situated at the interface of (bio)physical chemistry, soft matter
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Technical Responsibilities Design and screen high-affinity ssDNA aptamers targeting environmental microorganisms listed in the US Pharmacopeia. Develop nanoparticle-based SERS substrates (Ag/Au nanoclusters
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from the lab includes the development of nanoparticles with surfaces that do not compete with endogenous ligands, such as transferrin. This innovation has the potential to improve drug targeting and
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from the lab includes the development of nanoparticles with surfaces that do not compete with endogenous ligands, such as transferrin. This innovation has the potential to improve drug targeting and
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for cancer diagnosis, prognosis, and therapeutic response prediction. Our research involves experiments with RNA Biology, RNA modifications/editing, mRNA-based therapeutics, lipid nanoparticle (LNP) and
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Applicants should have experience in a chemistry wet lab and ideally should have experience synthesizing catalysts such as metal oxide nanoparticles for electrochemical devices, as well as experience with
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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
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Description The Lewis Lab is seeking a postdoctoral fellow with expertise in one or more of the following areas: nanoparticle synthesis, colloidal science, rheology, or granular media. The successful candidate