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., solid-state batteries. How is the ion transport dependent on interactions between the polymeric solvent and the ions? What happens with the ion transport at the interface between two different polymers
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. Read more at www.wwsc.se Your work assignments Your research will be to develop polymerization concepts towards, transparent, functional, and chemical recyclable polymeric materials. Your particular
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characterize the synthesized polymer electrodes using state-of-the-art chemical analysis tools and develop novel methods for purifying polymeric electrocatalysts using liquid chromatography. Furthermore, you
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focuses on Multiscale modelling of ion transport and interfacial phenomena in Li-metal polymer batteries and is a part of RIDERS which is a Marie Sklodowska-Curie funded doctoral network with the goal
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dynamic conducting polymer nanooptics, structural coloration and cellulose-based optics. Examples of application-areas include radiative cooling, dynamically tuneable metasurfaces, and reflective displays
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part of the Organic photonics and Nanooptics group (www.mpjonsson.com ), headed by Prof. Magnus Jonsson. Recent interests of the group include dynamic conducting polymer nanooptics, structural coloration
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role not only in the mechanical properties of the formed electrode but also in determining the long-term cycling performance of the battery. However, the polymer-based binders used for both anode
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nanosystems technology, or equivalent. Documented courses or project work in polymer chemistry is required, independent on the degree. We require good skills in oral and written English. Rules governing PhD
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, chemical engineering, polymer chemistry, battery oepration and materials, and/or membrane science specialisation are encouraged to apply. The applicant should have a good knowledge of English, both orally
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bioelectronic devices. Project description Project title: Synthesis of biodegradable conjugated polymers. Supervisors: Assist. Prof. Erica Zeglio (main supervisor); Prof. Ergang Wang (co-supervisor). The increase