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Your Profile: An excellent master’s degree with strong background in nano science, materials science, chemistry, chemical engineering, physics or related Experience with modeling of reaction kinetics
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activities include the following: Seminars Lectures within the field of Science and Technology of Nano-Systems Thesis Advisory Committee (TAC) Mentoring Complementary skills training Career counselling
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the micro-structures and nano-structures of pure substances and composites. Battery Cell Technology The battery cell serves as a technological demonstrator for developed materials. All developments
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the Laboratory for Nano and Quantum Engineering (LNQE) and the two clusters of excellence QuantumFrontiers and PhoenixD. The participating institutes are equipped to the highest standards, with the LNQE research
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nano-computed tomography, and scanning electron microscopy design and implement deep learning models to enhance resolution of large field-of-view imaging techniques integrate imaging data across
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PhD student (m/f/d) in the field of chemistry, chemical engineering, materials science or comparable
that bridges synthetic materials chemistry, simulation, automation, and nanotechnology Hands-on experience in the syntheses of nano- and advanced materials in general and/or polyoxometalates and porous
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of molecular and biological matter using X-ray and neutron scattering. The main research areas are materials for photovoltaics, proteins in solutions and at the interfaces, complex nano-structured materials and
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using X-ray and neutron scattering. The main research areas are materials for photovoltaics, proteins in solutions and at the interfaces, complex nano-structured materials and machine learning tools
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Collaborative Doctoral Project (PhD Position) - AI-guided design of scaffold-free DNA nanostructures
nano-structures. In this project, we will combine numerical models, experiments, and artificial intelligence (AI) to guide the design of specific DNA nanoconstructs. The primary goal is to build an AI
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- and nano-tomography at DESY (Deutsches Elektronen-Synchrotron / German Electron Synchrotron) and Scanning Kelvin Probe Force Microscopy (SKPFM) for visualising the distribution of cathodic phases in