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Employer
- ICN2
- Institute of Photonic Sciences
- Autonomous University of Madrid (Universidad Autónoma de Madrid)
- Fundació per a la Universitat Oberta de Catalunya
- ICMAB
- Institut Barcelona d'Estudis Internacionals
- Institut Català de Nanociència i Nanotecnologia
- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
- Universitat Rovira i Virgili
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Field
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candidate will be expected to: Develop and optimize processes for the modification and nanostructuring of glass and optical material surfaces. Investigate relationships between fabrication parameters, surface
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, Chemical Biology, Soft Matter, Nanotechnology, Material Sciences, or closely related field. The candidate must have demonstrated expertise in microfluidic technologies for the fabrication of polymersomes
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research assistance to the Chair Produce audiovisual material for the GLOBALEUTY website, including the production of thematic podcasts, informative videos, short blogs and commentary on EU foreign policy
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holidays). And you'll be able to work reduced summer hours (35 hours a week), subject to organizational requirements. You'll be provided with the computer equipment and ergonomic material you need to work
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systems. Main tasks include material synthesis and characterization, low-temperature scanning tunnelling microscopy and spectroscopy, data analysis, scientific instrumentation, collaborative research
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device-level properties of amorphous graphene nanoribbons and related structures. This will provide a bridge between atomistic material modelling and experimentally measurable device characteristics
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: Support research within the EduWaterLab project. Functions to be developed: Support the management and coordination of the EduWaterLab project (WP1). Prepare teaching material based on laboratory
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of novel photonic architectures and material platforms for next-generation photonic applications. Contribute to research activities involving silicon photonics, silicon nitride, thin-film lithium niobate
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with deep learning to design van der Waals heterostructures with optimised spin-orbit torque (SOT) efficiency for ultra-low-power memory and computing. Its two pillars are AUTOMATA, an automatic material
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sintering with conventional thermal sintering in terms of electrical conductivity, adhesion, mechanical stability, and substrate compatibility. The candidate will perform material and device characterisation