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of performance for magnetic hyperthermia (MHT), magnetic particle imaging (MPI), and sensing applications. The position offers a unique opportunity to bridge fundamental magnetism, advanced nanofabrication, and
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Membranes and Textiles laboratory, interdisciplinary teams work on the development, integration and validation of novel sensing systems - particularly for textile applications. The focus lies
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for 5G and WiFi communication and provide accurate motion and sensing at the smallest length scales. The growing need for highly integrated micro-electro-mechanical systems (MEMS) necessitates
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approach integrating ICP MS, ion selective electrode sensing, and ion chromatography to analyze the release of transition metal ions from the cathode into the electrolyte, as well as the formation
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-nanofabrication technologies; Investigating the electrochemical mechanisms for sensing and catalytic applications; Developing applications in pollution mitigation and resource recovery. Additionally, our group