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optimisation of organic redox-active molecules for next-generation aqueous redox flow battery and electrochemical booster systems. Aqueous redox flow batteries are promising candidates for long[1]duration energy
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applications resulting from her research on the role of nanomaterials. These include practical, circular solutions for a sustainable energy transition and the development of a new generation of batteries. 23-11
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. The position is embedded in the context of the RVO project “SLDbatt”, in collaboration with Dutch research organisations and ESS industry partners. The SLDbatt project aims to develop and deploy battery
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into real-world battery applications? Do you enjoy hands-on laboratory work on-scale, reactor optimisation, and developing sustainable chemical processes with industrial relevance? Are you curious about
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hardware (battery limitations, intermittent connectivity, limited compute/storage). Experience implementing or optimizing models for on-device or edge execution is a strong plus. Project Organizational
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continuous industrial demand, including coupling with batteries, thermal storage, and hydrogen systems. Investigate electromagnetic compatibility (EMC) challenges, including harmonic resonance and mitigation