10 electronic-engineering-"https:"-"https:"-"https:"-"https:"-"https:" research jobs at ICN2
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(AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group also works towards
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Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group also works
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Engineering, Data Science. Knowledge: Deep expertise in electron microscopy, particularly STEM and EELS methods. Proven experience in designing and conducting in-situ TEM experiments. Familiarity with energy
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areas of nanoscience and nanotechnology. Job title: Postodoctoral Researcher Position in (Scanning) Transmission Electron Microscopy of Catalytic Materials for Green Hydrogen and Energy Applications
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areas of nanoscience and nanotechnology. Job title: Postdoctoral Researcher in Altermagnetic Spintronics Research area or group: Physics and Engineering of Nanodevices Description of Group/Project
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existing experimental results and guide the design of future carbon-based electronic and optoelectronic devices. Requirements: Education: Master in materials science or engineering, PhD in materials science
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, nanotechnology, chemistry, chemical engineering, printed electronics, micro/nanofabrication, or a related field. Printed electronics techniques, particularly screen printing or inkjet printing. Chemical treatment
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devitrification and local transformations; analyze results and prepare publications. Requirements: Education: PhD in Physics, Materials Science, Nanoscience, Physical Chemistry, Electrical Engineering, or a closely
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programme. Requirements: Education: PhD in chemistry, chemical engineering, materials science, biochemistry or equivalent. Knowledge: Extensive expert use of an array of physicochemical and materials
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contributions (local moments, exchange and magnon-mediated channels, interfacial and non-adiabatic effects) not captured by conduction-electron transport alone. Derive the corresponding analytical expressions