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24 months, the main workplace will be at Thermo Fisher Scientific in Bremen. The researcher will work on adapting an electrospray ion source and related instrumentation. The researcher will
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mechanisms governing light-ion emission in neutron-induced reactions over a broad range of neutron energies. Particular attention will be given to the transition from compound-nucleus-dominated behaviour
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renewable carbon feedstocks, in lithium- and sodium-ion batteries. The ultimate purpose is to reduce climate impact, improve safety, and decrease strategic dependence on fossil and externally sourced raw
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is essential. Indeed, the intermittent and variable nature of renewable energy sources such as wind and solar power makes storage necessary. Redox-flow batteries, which allow for the decoupling
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive
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is low compared to the ion cyclotron frequency. However, this low-frequency approximation does not apply to most experiments, where the phase velocity is of the same order of magnitude as the ion
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Lithium plating is among the most hazardous failure mechanisms affecting lithium-ion batteries under aggressive cycling conditions. It often initiates silently, yet can lead to catastrophic outcomes
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an exceptional know-how and experimental methodology, in a high-level scientific environment. The context of frequency metrology requires to master and control the noise sources of the experimental setup as
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gel electrolytes. Investigation of ion–polymer interactions, ionic transport, and thermoelectric properties. Selection and electrochemical characterization of redox-active materials for thermal energy
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heterostrucure. a first approach we will use BaTiO3 as FE, Fe as FM1 material, Co40Fe60 as FM2, and NbN as SC. The samples will be grown using the molecular beam epitaxy facilities in the KU Leuven Ion and