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Research Council rate (currently set at £20,780 p.a.) for 3.5 years. Please note the eligibility criteria set out by the UKRI at: https://www.ukri.org/what-we-do/developing-people-and-skills/esrc/funding
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the MIPrecise program, and shall include secondments at partner organisations. Specifically, the doctoral candidate shall develop epitope imprinted nano molecularly imprinted polymers (MIPs) for recognizing
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expertise in organic/polymer synthesis and characterization as well as photopolymerization and ideally 3D printing. The Research Associate position will independently carry out various responsibilities
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As a PhD candidate, you will develop a molecularly imprinted polymer (MIP)-based sensor for detecting antimicrobial resistance (AMR) in pathogens that threaten human health. Acting as artificial
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organic/polymer chemistry, bioconjugation techniques, analytical methods, and/or cell and animal studies and biological assays. The ideal candidate will also have hands-on experience in several
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Drug release studies What you bring The Barz lab is looking for candidates with strong background in Polymer and Organic synthesis. Ideally in peptide synthesis, NCA polymerization or synthetic organic
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, employing commercially available liquid or polymer-gel conductive electrolytes, also deposited as thin films. Materials/layers/devices functionality will be established through physico-chemical analyses
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DWI-Leibniz-Institute für Interaktive Materialien e.V. | Aachen, Nordrhein Westfalen | Germany | 28 days ago
purposes, including bioprinting Combining our expertise in Functional & Interactive Polymers and Advanced Macromolecular Materials for Medicine, we are developing functional and biological microgels that can
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Instituto de Tecnologia Química e Biológica António Xavier ITQB NOVA | Portugal | about 2 months ago
characterization by FTIR, mass spectrometry, and other physicochemical and materials methods (e.g. thermo-mechanical) are required; • Experience in polymer/materials processing using green processes (e.g. ionic
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, and systems-level analyses. The scientific objectives of this PhD are: Developing and characterizing fire-retardant (FR) polymers for use in spacecraft and space habitats, with an emphasis on materials