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catalyst structure–performance relationships. The most promising catalysts will then be optimized and evaluated under practically relevant electrolysis conditions, contributing to the development of a
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resolve the active electrode-electrolyte interface structure present under catalytic conditions, and study how it changes when the catalyst structure (e.g. crystallinity and elemental ratio) and electrolyte
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of structure-property relationships. https://sustainablepolymersynthesis.com/ Interested? Want to know more about this position or what it’s like to work at our university? Reach out to Katrien Bernaerts
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working with modification technologies, whether (bio)chemical or physical? Do you enjoy using advanced analytical techniques to understand structure–function relationships and translate them into fossil
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sensitivity of green steels [Tata Steel; Marc Geers] PhD 3: From structure to properties in green metastable stainless steels [Philips, Alleima; Marc Geers] PhD 4: Solute-dependent bcc crystal plasticity in
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, depolymerization, dynamic bonds) to make the end-of-life of polymers more sustainable. Structure-property relationships of the resulting polymers are evaluated in several fields of application e.g. stimuli
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to the translation of research outcomes towards clinical application by working on the commercialisation of micronutrient assays in erythrocytes and leukocytes. Where to apply Website https
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modeling, construction of numerical methods, coding, testing, numerical simulations, and possibly measurements. You will mainly do your programming work in a mixed programming environment, i.e. combining
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Modeling: Generating and maintaining patient-stratified iPSC lines and innovative 3D "brain chimeroid" models. o Advanced Neurophysiology: Assessing functional network activity and synaptic dynamics using
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Nanoscience, TU Delft, to investigate the electronic structure and magnetic behavior of molecular and atomic spins on surfaces. These PhD positions form the core of the ERC project, SPINOCCHIO, “A new quantum