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with partenrs' sites will be planned. Participation in an international congress will also be encouraged. Preparation, study, and processing of conductive polymers for hybrid electrical energy storage
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biointerfacing synthesis and Structural and physicochemical characterization of electrode materials (porous carbons, conductive polymers, porous polymers) and electrolytes: application of modern analytical methods
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university. We offer an innovative academic education to more than 20 000 students, conduct pioneering scientific research and play an important service-providing role in society. We are one of the largest
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are the opposite. This PhD will explore electroactive shape-memory polymer (SMP) morphing structures activated by Joule heating, aiming to achieve large, rapid, and repeatable motion without reliance on motors
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will join the Environmental Health (EH) group within the Environmental Sustainability Assessment and Circularity (SUSTAIN) Unit at LIST. SUSTAIN conducts cross-disciplinary research to support the
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undergo compaction, leading to changes in permeability, porosity, and long-term membrane stability. We will investigate how nanoscale morphology, filler–polymer interfacial chemistry, and structural
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from liquid crystals to foams, as well as polymers and granular systems. These physics studies lie at the interface of physical chemistry and biology. The research will be conducted within the Mesoscopic
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chemistry, and electrochemical performance as well as binder-enabled material recovery. As our new Doctoral Researcher (PhD Student), your responsibilities will include conducting material and binder design
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excitations and excitonic effects using advanced Wannier-based methods * Quantum transport in polymer materials with electron–phonon coupling Full details and application instructions: https://www.ch.nat.tum.de
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. Several strategies will be explored: light induced carbene/nitrene insertion into CH/OH bonds, photoactivation of latent catalysts, direct photocatalysis, and radical-based (auto)oxidative curing