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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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Your Job: In this position you are responsible for the identification, comprehensive characterization and development of advanced electrolyte components and resulting electrolyte formulations
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additives) for nonaqueous aprotic lithium ion battery electrolytes You determine the relevant physicochemical (e.g., water content, viscosity, etc.) and thermal (TGA, DSC) properties of nonaqueous aprotic
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Your Job: The work will be conducted in the EU project “Modelling pollutant transport across the soil-water-atmosphere continuum, and impacts on ecosystem services (SOILPROM). The central aim
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. The nanoporous structure steers the transport of ions, water, and gas molecules, and it maximizes the active interfacial area between electrode and electrolyte phases. A deep understanding of the complex interplay
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Your Job: We offer a challenging and innovative PhD position within the international EU project LOCALISED. You will play a key role in the development of regionally adapted plans for the European
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presenting the results, while collaborating with other group members and collaborators You will obtain your PhD from Bonn University. Your Profile: Completed Master`s degree in physics (or related fields
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within the scientists at JSC, Bonn University, and within the CRC "NuMeriQS" You will obtain your PhD from Bonn University. Your Profile: Completed Master`s degree in physics (or related fields) Ideally