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on the development of advanced RNA delivery technologies. The laboratory's research focuses on the design, synthesis and evaluation of novel lipid- and polymer-based delivery systems for RNA therapeutics, with
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of Polymers for Life (CPL)/University of WürzburgCountryGermanyCityWürzburgGeofield Contact City Würzburg Website https://www.uni-wuerzburg.de https://www.doryab-lab.com Street Pleicherwall 2 E-Mail ali.doryab
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based on single-atom platforms (SAPs) with asymmetric active sites, using asymmetry to enhance catalytic efficiency. Through on-surface synthesis, 1D covalent polymers with tunable active sites will be
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Biophysical and Biomedical Measurement Group - NIST | Gaithersburg, Maryland | United States | 14 days ago
to polymers and nucleic acids. This project builds on recent NIST work demonstrating single-molecule biodosimetry using resistive-pulse nanopore measurements of radiation-induced DNA fragmentation. The next
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will principally devote yourself to your research studies. Your work will include: Development and characterization of quasi-solid-state ionic thermoelectric materials, including polymer-based gel
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polymers. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5672-FABMON-010/Default.aspx Requirements Research FieldPhysicsEducation LevelPhD or equivalent LanguagesFRENCHLevelBasic Research
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) methodologies. The research will focus on Li-ion cells pairing polymer-based redox cathodes with graphite/Si–graphite anodes. It will encompass electrolyte formulation and screening, quantitative interphase
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industrial and medical applications. More information can be found via: https://www.maastrichtuniversity.nl/research/institutes/amibm/research/biobased-polymers About Research Group Sustainable Polymer
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biomedical materials, tissue engineering, and industrial and medical applications. More information can be found via: https://www.maastrichtuniversity.nl/research/institutes/amibm/research/biobased-polymers
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student, you will principally devote yourself to your research studies. Your work will include: Development and characterization of quasi-solid-state ionic thermoelectric materials, including polymer-based