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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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: The successful candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental partner groups MPI Halle and Leiden
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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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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | about 2 months ago
of nanoribbons from 2D materials: Investigate the effects of mechanical deformation on the structural, electrical, and optoelectronic properties of nanoribbons prepared from 2D materials, mainly graphene and
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of today’s computers. The mission of Peter Grünberg Institute – Electronic Materials (PGI 7) ( www.fz-juelich.de/de/pgi/pgi-7 ) is to create a scientific and technological basis for harnessing energy
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requirements: Expertise in the bottom-up organic/polymer synthesis and characterization of large aromatic compounds, graphene molecules and nanoribbons. General Requirements: very good university degree (M.Sc
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requirements: Expertise in the bottom-up organic/polymer synthesis and characterization of large aromatic compounds, graphene molecules and nanoribbons. General Requirements: very good university degree (M.Sc
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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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Your Job: Fabricate and test area-dependent memristive devices with electron transparent top electrodes (e.g. graphene) for operando spectroscopy Develop device geometries suitable for operando
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of 2D layers and layer stacks built from graphene, hexagonal boron nitride and transition metal dichalcogenides by metal organic chemical vapor deposition on sapphire and related substrates