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Field
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hold a high potential to be a sustainable option for several applications currently using lithium-ion batteries (LIB). In this project, Sodium-ion batteries for transport: from materials to cell
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. Main Tasks and responsibilities: Support on the development of zinc ion batteries based on prussian blue materials. The main task and responsibilities will be: - Electroactive nanomaterials preparation
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radioligand-resistant cell line panels Clinical patient tissue samples for mechanistic validation via multiplexed immunohistochemistry and single-cell sequencing Collaborative Environment You will join an
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applications for a Doctoral Researcher (PhD student) position in the field of Sustainable Aqueous Processing of Ni-rich Cathodes for Lithium-ion Batteries at the Department of the Technical Physics on the Kuopio
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We are seeking a highly motivated researcher to develop next-generation neuronal actuators based on light-gated ion channels. The ideal candidate will have experience in protein engineering
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elemental ratio) and electrolyte composition (pH, ions) are varied. By linking this to the observed activity, stability and selectivity, you will build interface design principles for electrocatalytic
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electrocatalytic model systems (thin films, single crystals of Fe, Ni, Cu, oxides) at different pH and ion composition. The DC will investigate the relationship between chemical activity and structure through
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stimulated Raman scattering and two-plasmon decay, which involve Langmuir waves, as well as stimulated Brillouin scatter-ing and cross-beam energy transfer (CBET), which involve the ion acoustic response
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composition (pH, ions) are varied. By linking this to the observed activity, stability and selectivity, you will build interface design principles for electrocatalytic systems. During the project, you will
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(hosts) with a small bandgap that absorb the entire visible part of the solar spectrum (black materials), very few show efficient luminescence of doping ions. Such host-to-doping-ion transfer is often