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Field
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for molecular systems and thin films in combination with AI-driven process optimization. Help us shape the future of chemical research! Self-driving lab platform for photochemical and porosity research Join a
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engineering in a unique way. The Atomic Scale Processing group (Prof. Miika Mattinen) in the Department of Chemistry and Materials Science (CMAT), is now looking for: Doctoral researcher (PhD student) in thin
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(Prof. Miika Mattinen) in the Department of Chemistry and Materials Science (CMAT), is now looking for: Doctoral researcher (PhD student) in thin films for electrocatalysis Are you passionate about
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Atomically thin layers of various materials can be combined - almost at will - into novel artificial materials, with graphene structures being the most prominent examples. If two (or more) layers
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The successful candidate will develop generative machine-learning methods for amorphous molecular thin films — the supramolecular structures that govern the performance of organic-electronic materials
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production of advanced heat exchangers, where thin walls and intricate internal features can improve performance and efficiency. Alloy 625 is expected to play a major role in future heat-exchanger designs
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and predictive design framework for thin-film composite mixed-matrix membranes (TFC-MMMs). The primary objective is to design TFC-MMMs capable of efficient high-pressure gas separation for carbon
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About the project: Multi-scale modelling of Thin Film Deposition with Flowable CVD for Next-gen Semiconductors Supervisor: Dr Bora Karasulu, University of Warwick This project, co-funded by Merck
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, sensor lifetime and retention lifetime. Understanding and sequencing these lifetimes is crucial to the success of the project. You will gain experience in cleanroom microfabrication, thin-film patterning
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through chiral molecules, self-assembled monolayers, and chiral thin films. Develop and apply surface- and interface-sensitive measurements relevant to CISS, which may include magnetoresistance and spin