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qualification (usually PhD). Tasks: The successful candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental
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, and optoelectronic properties of nanoribbons prepared from 2D materials, mainly graphene and transition metal dichalcogenides. Our teams are part of a larger collaboration, focusing on various aspects
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-efficient neuromorphic computing inspired by the functioning of the human brain. Two-dimensional materials such as graphene and transition metal dichalcogenides (TMDCs) offer high potential for scaling and
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development of topological and chiral GNRs Specific requirements: Expertise in the bottom-up organic/polymer synthesis and characterization of large aromatic compounds, graphene molecules and nanoribbons
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qualification (usually PhD). Tasks: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials
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: Fabricating and testing area-dependent memristive devices with electron transparent top electrodes (e.g., graphene) for operando spectroscopy Developing device geometries suitable for operando spectroscopy
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of plant development. You will work in an interdisciplinary team with postdocs from Jülich and Hohenheim. Your tasks Literature research and (meta-)analysis to provide evidence-based knowledge for model
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phase (April 2025 – December 2028), the TRR404 offers several PhD and Postdoc positions with starting dates from April 1, 2025 onwards. All vacancies can be found here: https://cfaed.tu-dresden.de/trr
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phase (April 2025 – December 2028), the TRR404 offers several PhD and Postdoc positions with starting dates from April 1, 2025 onwards. All vacancies can be found here: https://cfaed.tu-dresden.de/trr
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phase (April 2025 – December 2028), the TRR404 offers several PhD and Postdoc positions with starting dates from April 1, 2025 onwards. All vacancies can be found here: https://cfaed.tu-dresden.de/trr