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(nano)materials. The research will investigate both direct and indirect quenching strategies, with a focus on singlet oxygen production and suppression in photoelectrochemistry and sensing applications
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on building the next generation of quantum processors based on superconducting circuits. To achieve this ambitiuous goal, we have a variety of projects related to: Development and optimization of nano
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Max Planck Institute of Microstructure Physics • | Halle, Sachsen Anhalt | Germany | about 4 hours ago
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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next-generation nano-optoelectronic devices with enhanced or entirely new properties. We welcome candidates with a strong background in condensed-matter physics and/or quantum nanophotonics, who
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Scattering and Plasmon-Driven Catalysis, 2024, ACS Nano, 18, 18785-18799. https://doi.org/10.1021/acsnano.4c06858
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tissues or reveal micro- or nano-structural features, like the small air sacs in lungs. To overcome these limitations, alternative X-ray imaging methods have been developed: X-ray phase-contrast and dark
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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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profiles by various forming processes. Age-hardenable aluminium alloys are reinforced by nano-sized precipitates that form during artificial aging to achieve peak strength. However, precipitate-free zones
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(preferably in liquids) or other relevant nano-characterization techniques for graphene materials Hands-on experience in one or more of these characterization techniques with focus on graphene materials: SEM
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detection. One highly promising direction NV-based nano- and microscale nuclear magnetic resonance (NMR) spectroscopy. In our lab, this quantum sensor based NMR spectroscocopy is applied to life sciences as