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to e‑wax), and long-term stability. By combining advanced kinetic studies with state-of-the-art operando characterization techniques, you will develop fundamental insights that enable improved catalyst
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, Chemical Engineering or related fields; excellent skills in organic synthesis, polymer synthesis and chemical characterization; interest in the material characterization of recyclable networks (rheology, DMA
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Chemistry, Chemical Engineering or related fields; excellent skills in organic synthesis, polymer synthesis and chemical characterization; interest in the material characterization of recyclable networks
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fabrication. As a PhD candidate, you will: Synthesize and characterize 2D materials, for instance, layered halide perovskite semiconductors. Fabricate and assemble van der Waals heterostructures combining
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cutting-edge SERS microspectroscopy sensors to detect and characterize fungal secondary metabolites at single-cell scale? This PhD might be for you! Soil fungi are key drivers of global carbon and nutrient
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approximately 3,000 to 15,000 MKIDs integrated on a single 4-inch wafer. Your work will cover the full development cycle, including detector design, microfabrication, device characterization, and system
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feedstocks, powder production and characterization, multi-material LPBF process optimization, and the investigation of interfacial physics governing residual stress, defect formation, and thermal transport
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. Combining advanced characterization, materials science, and metallurgical insight, you will explore how these elements affect microstructure evolution, processing behaviour, and ultimately material
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for martensitic stainless steels, where they originate from, and how they accumulate throughout recycling loops. Combining advanced characterization, materials science, and metallurgical insight, you will explore
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, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D self-organization of active particles. § Fabricate and characterize light-driven microswimmers