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materials and nanomaterials, multi-functional polymer and ceramics, high-entropy alloys, and bio-/ bio-inspired materials. The college is especially interested in qualified candidates who can contribute
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alloys produced from post-consumer scrap within the RACE project. The research will focus on understanding microstructure–property relationships and corrosion mechanisms in high-scrap aluminium alloys
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mechanistic study of high corrosion susceptibility of additively manufactured biodegradable Mg and Zn alloys. Host: Helmholtz-Zentrum Hereon, Geesthacht, Germany, with PhD degree awarded by Kiel
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: Impact of metal or metal alloy crystallographic orientation on ammonia electrocatalysis to enable design of the most efficient catalysts. Understanding what controls electrocatalytic stability, long term
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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Project '' Facilitating a paradigm shift in osteosynthesis: Controlling biodegradation of magnesium alloys an their local effect on surrounding tissue'' (Nr. 10007007; project start 01.10.2025
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& statistical physics for civil engineers. The focus of research should be on the use of thermodynamic for the sustainable material development. Tasks: Research: Thermodynamic Modeling of Metallic Alloys
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on mechanistic study of high corrosion susceptibility of additively manufactured biodegradable Mg and Zn alloys. Host: Helmholtz-Zentrum Hereon, Geesthacht, Germany, with PhD degree awarded by Kiel University (CAU
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And FerroElectric properties of ScAlN alloy) project aims to develop and understand a new class of lead-free ferroelectric materials based on scandium aluminum nitride (ScAlN). These alloys combine
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. The structure of liquid metals, alloys and nanostructured catalysts is difficult to characterize, particularly under reaction conditions involving high temperatures and gases. However, the pair distribution