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international research environment dedicated to developing functional molecular architectures for light harvesting, photocatalysis, electrosynthesis, and optoelectronic applications. The research activities will
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of designing and utilizing molecularly imprinted polymers (MIP). The group combines fundamental materials research with the aim of bringing MIP as close as possible to commercial applications. It operates in a
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excited states. Further, we use and develop classical and quantum dynamical methods to explain molecular photochemical process, also in complex environments. Your personal sphere of play: A university
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and quantum cybersecurity applications? Can we scale up multiphoton platforms by using integrated optics, quantum-dot single-photon sources and customized two-dimensional nonlinear materials
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proven track record (published research papers / papers under review) in the area of waste collection systems You have experience (publishes papers / papers under review) in the area of deep neural