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decoupling the key thermoelectric characteristics using a “nanoparticle-in-alloy” design strategy within an inorganic thin-film system. The core objective of the research is to tailor the interface structure
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synthesis. SERS detection. DFT calculation. Where to apply Website https://sede.uvigo.gal/public/catalog-detail/27660208 Requirements Research FieldChemistry » Physical chemistryEducation LevelPhD
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participate in research projects focused on creation of delivery of mRNA nanoparticles. The ideal candidate will have (or be soon completing) a doctoral degree in biomedical engineering, chemical engineering
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fate of emerging contaminants such as manufactured or accidental nanoparticles in the environment, processes enabling the recovery of critical technological elements (TCEs) in the context of the circular
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. More information on the Howard laboratories can be found here: https://sheffield.ac.uk/smph/people/academic/clinical-medicine/faith-howard We are seeking a highly motivated, practically skilled, well
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physical/digital event, see details at https://uit.no/arcticmsca/programstructure ). At this event, the candidates will present their past research achievements, discuss future plans with their potential
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | about 2 months ago
and advanced materials to deliver biofilm-disrupting agents directly to the wound site in a controlled manner. Nanomaterials development: Preparation of magnetic nanoparticles linked to biofilm
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/bayesian/deep-learning analyses, with functional validation in spruce via CRISPR-Cas9 and nanoparticle delivery. The postdoc will join Professor Nathaniel R. Street’s team at UPSC, working closely with
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the construction of an NLISA-type bioassay using decorated magnetic nanoparticles." The employee's role will be to participate in work on the synthesis and modification of nanozymes, testing their activity
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | about 1 month ago
ceria nanoparticles doped with catalytically active metals. The chemical composition, size, and distribution of the active phase particles on the support will be meticulously engineered to optimize