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Halide perovskites are a fascinating class of materials with a wide range of applications in (spin)optoelectronics. Their outstanding optoelectronic properties are strongly influenced by coupling
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About the project: Generative AI-enabled Molecular Design for Optoelectronic Applications Supervisor: Dr Zsuzsanna Koczor-Benda, University of Warwick Molecular optoelectronic devices have a high
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the Quantum Nano-Optoelectronics led by Prof. Dr. Frank Koppens. Our PhD-program brings together top-level training and teaching for young scientists , benefiting from the extensive course offerings of local
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In this project, you will explore light–matter interaction in two-dimensional systems in high magnetic fields, with the goal of understanding and engineering novel optoelectronic functionalities
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fields, with the goal of understanding and engineering novel optoelectronic functionalities. The research combines materials synthesis, heterostructure assembly, advanced spectroscopy, and device
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optoelectronic applications, such as hybrid perovskites, MOFs, and materials for energy in general, as well as systems at the interface between life sciences and materials science. The research line has close
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photonic integrated switches. Packaging and assessing the photonic integrated switches in collaboration with the industrial partners. Develop the optoelectronic interfaces and controls to enable remote
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dynamics, and density functional theory (DFT) can be combined to accelerate the discovery and design of next-generation organic semiconductor materials with tailored optoelectronic properties. The project
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The goal of my research is to synthesise and characterise functional low-dimensional materials with atomic-scale precision and tailored electronic, optoelectronic, magnetic and chemical properties
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The Materials to Optoelectronic Devices (M2D) group ( https://www.m2ngroup.nl ) at the Eindhoven University of Technology (TU/e) is looking for a motivated PhD candidate to join an exciting research