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PostDoc in Automated Spectroscopy of Photoactive Molecules and Thin Films How can we accelerate the discovery of next-generation materials - from porous architectures for CO₂ capture to photoactive systems for sustainable solar-energy conversion and unprecedented photomedicines? In this project, you will build a self-driving laboratory platform that will help solving outstanding questions at the forefront of (photo)chemistry by implementing automated spectroscopy workflows for molecular systems and thin films in combination with AI-driven process optimization. PostDoc in Automated Spectroscopy of Photoactive Molecules and Thin Films How can we accelerate the discovery of next-generation materials - from porous architectures for CO₂ capture to photoactive systems for sustainable solar-energy conversion and unprecedented photomedicines? In this project, you will build a self-driving laboratory platform that will help solving outstanding questions at the forefront of (photo)chemistry by implementing automated spectroscopy workflows for molecular systems and thin films in combination with AI-driven process optimization. PostDoc in Automated Spectroscopy of Photoactive Molecules and Thin Films Join a highly interdisciplinary project with the spectroscopy at its core at the University of Amsterdam that brings together automation, flow technology, photophysics, and spectroscopy. The project aims at establishing a self-driving platform for photohemical research. You will first implement new reliable and quantitative diffusion-ordered optical spectroscopy that will permit rapid and automated determination of fundamental photochemical parameters, such as optical spectra, quenching, or quantum yields. This will aid and abet discovery of new systems for photoactivated chemotherapy. Second, you will co-supervise development of a flow-based ATR-UV-Vis spectroscopy platform that follows the formation of porous or photoactive thin films in r...



