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Field
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. Central to this innovation is the development of printable, active macromolecular materials, engineered polymers that couple structural integrity with biological responsiveness. Such materials
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the email server of TUD applies), preferably via the TUD SecureMail Portal https://securemail.tu-dresden.de by sending it as a single pdf file to rtg3120 at tu-dresden.de or to: TU Dresden, Chair
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, Polymer Chemistry, Mechanical and Processing Engineering, Wood Science Specific Requirements: There are strict eligibility requirements for the DC positions in MSCA-Doctoral Networks (DNs). Please ensure
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nanotechnologies and bioapplications (https://plasma.sci.muni.cz ), which focuses on basic and applied research in the physics and chemistry of low-temperature plasma. The main activities of the group
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EU-MSCA PhD position: Molecularly imprinted polymers for phosphopeptide assays of oncogenic pathways
. Selection criteria Required qualifications: A masters’ degree (or equivalent) in polymer/organic chemistry, bioanalytical protein/peptide science or another related field. Experimental laboratory experience
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on the development of new characterization methods and on the manufacturing of complex textured surfaces through various processes (femtosecond laser, additive manufacturing, polymer replications, photolithography
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working both on the development of new characterization methods and on the manufacturing of complex textured surfaces through various processes (femtosecond laser, additive manufacturing, polymer
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and characterization of injectable, phage-loaded biomaterials based on (bio)polymers and bioactive glasses. Isolation, maintenance, and antibacterial testing of bacteriophages against oral bacterial
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: Sustainable building blocks for footwear (Laboratory for Chemical Technology, Ghent University - UGent, Belgium) DC2: Chemical design for recycling (Polymer Chemistry Research Group, Ghent University - UGent
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disordered Brownian motion to unidirectional flow. In the project we will develop 2D polymer heterostructure membranes (2DHMs) combined with functionalized graphene. They offer ultimate thinness (leading