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Laboratory has for many years hosted a research environment focused on the development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel
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, morphology, and the efficiency of charge transfer between mediator and solid under continuous flow. Postdoc position on redox-targeted flow batteries Your tasks Your task is to develop solid booster
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At AAU Energy, a position as Postdoc in sodium-ion battery state estimation is open for appointment from 1st of November 2026 or as soon as possible hereafter. The position is available for a period
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. The research project focuses on the development of solid electrode composites, so-called boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in
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construction sites while traction-bus batteries can be repurposed as second-life energy storage for peak shaving. Job description The rapid electrification of transport, buildings, and industry is creating
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understanding and ultimately controlling these interfaces, we will enable the development of advanced energy systems and electronic devices, including high energy Li/Na batteries, all-solid-state batteries
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To alleviate grid congestion, traction grids can provide EV charging for zero-emission construction sites while traction-bus batteries can be repurposed as second-life energy storage for peak
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technologies. We are pioneering a new class of melt-spun liquid-core fibers that selectively scavenge transition metal ions and other degradation products in lithium-ion batteries, mitigating cell damage and
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Delft, RUG, UTwente, TU/Eindhoven, U Nijmegen, DIFFER, TNO) to develop next generation batteries for ultra-long-duration energy storage. Specifically, this postdoc position focuses on redox mediated
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on various aspects along the battery value chain, ranging from synthesis, cell assembly, characterization, modeling to scaled-up manufacturing. The 2-year postdoc project Atomistic modelling and synthesis