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structure can be controlled to develop multifunctional surfaces for applications in photonics and related technologies. Research activities may include the development of nanostructured surfaces with tailored
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the laboratory and design experiments, optimize microfluidic workflows and troubleshoot complex experimental challenges. Strong and fluent written and verbal communication skills in English (minimum B2 level). A
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of construction and digitalization: optimization of construction processes, new and alternative cementitious materials, sensor-based monitoring of concrete performance, and sustainability assessment
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, simulate, and optimize integrated photonic circuits using micro-nano-structured materials for optical processing, routing, switching, and modulation functionalities. Develop and experimentally validate
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extensive electromagnetic modeling to optimize the waveguide structures for minimal loss, efficient confinement, and effective mode matching with external optical components. Particular attention will be
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the generation of green hydrogen via solar-driven photoelectrochemical (PEC) systems. In this position, you will apply advanced electron microscopy techniques, including STEM to investigate the structure and
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the structure and behavior of catalytic nanomaterials critical for green hydrogen and energy technologies. The candidate will design and perform real-time in-situ TEM experiments using gas and liquid sample
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spanning biochemistry, structural biology, cell biology, genetics, and advanced sequencing methods, we aim to answer the following questions: What are the factors and molecular mechanisms driving peptide