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Laboratoire Interdisciplinaire des Energies de Demain - Université Paris Cité | Paris 15, le de France | France | 21 days ago
, the influence of the local polymer environment (the “photomorphon”) on photoswitch performance will be investigated using non-adiabatic molecular dynamics3 and QM/MM simulations. By comparing isolated molecules
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-adiabatic molecular dynamics3 and QM/MM simulations. By comparing isolated molecules with polymer-embedded systems, the project will clarify how intermolecular interactions influence photoreactivity and
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films; 2. Integration of sensors into polymer substrates using printing techniques; 3. Characterization and evaluation of sensor performance under simulated food storage conditions; and 4. Life cycle and
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development of the following activities: Functionalization of natural polymers with thiol groups and maleimide groups; Formulation of hydrogels crosslinked through thiol–maleimide chemistry; Physicochemical
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to staff position within a Research Infrastructure? No Offer Description Aim: • To collaborate in the research activities of the Polymer Research Group, under the supervision of senior researchers and
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focus on AI-driven protein design. About the position The position involves research on the development of novel enzymes for the degradation of synthetic polymers, with a particular focus on plastic
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17 Apr 2026 Job Information Organisation/Company Institute of Physical Chemistry, Polish Academy of Sciences Department Team 18, Functional Polymers Research Field Chemistry » Applied chemistry
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of experimental polymer processing, natural fiber composite engineering, digital manufacturing and simulation technologies. Through close collaboration with dedicated industrial and academic partners, you will
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on the structure and dynamics of ring polymers in different topological environments, providing experimental evidence for phenomena predicted by theory and computer simulations. Small-angle neutron scattering (SANS
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polymers, with a particular focus on plastic materials. The project aims to design proteins capable of efficiently depolymerizing plastics into reusable monomers under mild and sustainable conditions. The