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Polymers using a combination of quantum and force field-based simulations that will be further integrated into a force field-based Molecular Dynamics (MD) approaches to assess the permeability and
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into polymer matrices. - Use of luminescent species for applications such as sensors. - Knowledge of DFT‑type simulation methods for modeling molecular properties. - Experience writing scientific articles and
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/01/2026 Job Summary The Sterling Group at the University of Texas at Dallas is seeking a postdoctoral researcher to explore polymer upcycling. Our research program integrates automated computational
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Environmental Engineering focusing on different research fields such as catalysis, separation, energy generation, conversion and storage, and organic optoelectronics intelligent and advanced polymers and
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on multiscale study of hydrogen embrittlement in steels. The primary mission of the postdoc is to support experimental efforts as well as large scale simulations by means atomistic simulations. Designing and
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through their work. Required Skills: Microfabrication on rigid and flexible polymer substrates (photolithography, metal evaporation, etching) Experience with packaging schemes such as flip-chip bonding
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polymer blending and colloidal lithography. Low-cost fabrication processes will be developed and optimized, and their performance will be analyzed using optical spectroscopy. Results will then be compared
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include surfactants, polymers and biomolecules. The current project focusses on Soft Matter, in particular on the study of the flow properties of compressible colloids, microgels, combining scattering
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the following documents: a) Application minute for the competition addressed to the Rector of the University of Aveiro; b) Copy of detailed curriculum vitae structured according to the items under point 5; d) Any
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methods (e.g., PCA, PLS-DA, clustering, neural networks) to enable automated, polymer-specific classification. Optimize workflows for high-throughput imaging and real-world sample variability, minimizing