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Field
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Computational modelling of two-dimensional graphene-based materials School of Mathematical and Physical Sciences PhD Research Project Self Funded Dr Natalia Martsinovich Application Deadline
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Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological
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, catalysis and biology. We use molecular beam epitaxy (MBE) to synthesize atomically precise crystals, we integrate them with two-dimensional exfoliated materials, and we characterize them using transport and
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, catalysis and biology. We use molecular beam epitaxy (MBE) to synthesize atomically precise crystals, we integrate them with two-dimensional exfoliated materials, and we characterize them using transport and
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for attractive two-year postdoctoral positions in one of the following areas: higher category theory, geometric representation theory, algebraic geometry, and (low-dimensional) topology, broadly construed
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/nanogune/join-us/open-position/515-post-doctoral-researcher-low-dimensional-materials-rectification Street Tolosa Hiribidea, 76 Postal Code E-20018 E-Mail l.benedetti@nanogune.eu Phone +34943574000 STATUS
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focused on defect engineering of two-dimensional transition metal dichalcogenides (2D-TMDs) for electrochemical nitrogen reduction reaction (NRR). The postdoc will be responsible for synthesis, exfoliation
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dimensions offer a paradigm-shifting approach to photonic systems, enabling the study of high-dimensional lattices physics using low-dimensional photonic systems. Our research combining quantum physics and
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internet. While most implementations rely on polarization entanglement, limited to two-dimensional encoding, high-dimensional states, e.g., based on the orbital angular momentum (OAM) of light, enable richer
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experience in at least some of the following areas: (magneto-)optical spectroscopy at cryogenic conditions, exfoliation and stacking of two-dimensional materials, design and handling charge-tunable