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will uncover the interfacial solvation structure, validated through comparison between computed and experimental sum-frequency vibrational spectroscopies, as well as the mechanism of chemical
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-channel nozzles and hollow channels with static mixer for multi-material deposition. Multi-material deposition can complicate control, as variations in rheology, curing kinetics, and interfacial bonding
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experiments to minimize interfacial thermal resistances in the system, controlling nanofiller network formation in upcycled waxes to enhance overall heat transfer characteristics. The project combines chemical
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: Investigating redox enzyme families (flavoproteins, cytochrome P450s, BVMOs, alcohol oxidases) under industrially relevant conditions, with emphasis on redox uncoupling, oxygen supply, and interfacial
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process performance under continuous flow. Results of biodegradation kinetics, adsorption behaviour and interfacial behaviour (performed at WUR-FPH) will be exploited to design a continuous process with