25 structural-engineering "https:" "https:" "https:" "https:" "https:" "https:" "Multiple" "https:" uni jobs at ICN2
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, - Morphological and structural characterization of the nanoparticles. - Integration of the nanomaterials in coating formulations. - Deposition onto glasses. - Characterization of the optical performances
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Electronic Materials and Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene and other 2D materials such as MoS2
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structural complexity. The group systematically integrates Safe-and-Sustainable-by-Design (SSbD) and green chemistry principles from the earliest stages of materials development, ensuring responsible
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Synchrotron developing correlative (S)TEM in-situ experiments on catalysts, from SACs to multiple types of nanostructures. This position is linked to the AMADE PID2023 project funded by AEI / MCIN, led by Prof
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nanomaterials via wet-chemistry routes, achieving precise control over size, morphology, composition, and structural complexity. Within the framework of the M2S project (ML + MD Optimization of Synthesis Routes
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technology. The main task and responsibilities will be: Electroactive nanomaterials preparation and their characterization (CV, FTIR, TEM, SEM...) Electrodes preparation and cell assembly. Electrochemical
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. Requirements: · Education: Degree in Biomedical Engineering, Electronics or Telecommunications enginering. · Knowledge or background: Background in biomedicine. Previous background in optical sensing and
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technology transfer and R&D projects with private companies. The position is to work as scientific entrepreneur on the CAPTEN-2 project, which belongs to the call Producte (2024 PROD 00290) funded by
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/nanostructuration of the thermochromic materials. - Morphological and structural characterization of the micro/nanostructured materials. - spectroscopic characterization of the thermochromic transition. - Formulation
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are expected to come out from the project. The project involves: - the optimization of the formation of biocompatible nanocapsules loaded with active materials, - Morphological and structural characterization