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- Institute of Physical Chemistry, Polish Academy of Sciences
- AGH University of Krakow
- Nicolaus Copernicus University in Torun
- Łukasiewicz Research Network - Krakow Institute of Technology
- Adam Mickiewicz University, Poznań
- Lodz University of Technology
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Field
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; synthesis of polymers (RAFT polymerization, ATRP), modification of surfaces or nanoparticles familiarized with analysis of polymers (GPC, NMR, FTIR) familiarized with analysis surfaces and nanoparticles (XPS
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adheres to the principles of the European Charter for Researchers and the Code of Conduct for the Recruitment of Researchers. We have an internal procedure for reporting violations of the law and taking
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position available in the Institute of Physical Chemistry PAS within National Science Center (NSC) OPUS 23, Project no. 2022/45/B/ST5/01500, entitled “Antiviral nanoparticles and polymers to selectively
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prior to 1 January of the year of employment on the project, has experience in electrospinning, motivation for academic work, strong commitment to research activities, very good knowledge of polymer
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Biomaterials Specialist. Responsibilities will include: developing and optimizing lactoferrin encapsulation processes and functionalized variants (complexation with metals, lecithinization), preparing stable
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process is conducted through an open competition in accordance with the FIRST TEAM FENG scholarship regulations. Principal Investigator Dr Barbara Pucelik Project Description The project aims to develop
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receptor-interacting molecules exhibiting synergistic activity and favourable safety profiles, followed by the preparation of their bioconjugates and encapsulation in naturally derived polymers. Subsequent
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—among the most important examples of which are hydrocyanation and hydroformylation—are processes of tremendous industrial importance, enabling the synthesis of pharmaceuticals, polymers, and functional
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bacteria-based processes are one of the most important in biotechnology and dominate many branches of industry, which exploit the natural metabolic capabilities of bacteria to produce active substances. All
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at the desired length of the polymer. By providing such a setup, we will create a new tool for fast and robust optimization of complex reactions that will provide a better understanding of the chemical processes