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high performance devices that are able to operate under an absolute voltage of 2.5 V at 200 mA cm-². More specifically, you will devise strategies for mitigating salt precipitation via innovative GDE and
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of electrode surface immobilized metal oxide nanoparticles, evaluate e-hydrogenation performance for different organic substrates, and investigate reaction mechanisms spectroscopically. A key target is to
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to the research project. As a PhD student of ELCAT you also support a part of the general research and teaching tasks to support the good day-to-day functioning of the research group and the Faculty of Applied
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therefore conduct research to understand how battery design, operating conditions and redox chemistry affect performance and study the influence on lifetime. Within the research group ELCAT you will find
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research to understand how battery design, operating conditions and redox chemistry affect performance and study the influence on lifetime. Within the research group ELCAT you will find yourself in