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strategies, photocatalytic transformations, and electrosynthetic approaches. These molecular platforms will be engineered as next-generation functional materials for applications in optoelectronics, molecular
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of Physical Chemistry in the work group for Chemical Sensing and Rapid Analysis at the Faculty of Chemistry, characterized by excellent research in biomimetic sensing. Especially, it is on the forefront
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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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skills; Data analysis and interpretation experience that is guided by theoretical/physical understanding and not only by application of statistical methods or artificial intelligence; A good team spirit
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agreement: §48 VwGr. B1 lit. b (postdoc) Limited until: 30.09.2028 Reference no.: 5886 How can we perform table-top experiments to obtain new insights into the foundations of quantum physics? Can we measure