40 computer-science-quantum-"https:"-"https:"-"https:"-"https:"-"https:"-"U.S" positions at ICN2
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of progress reports, protocols and presentations to share the latest results. Requirements: Preferably a master in chemical/materials/physical engineering. Master's in chemistry, nanoscience and nanotechnology
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Programmable Disassembly of Reticular Materials (Clip-off Chemistry). Main Tasks and responsibilities: Synthesis and characterization of reticular materials. Clip-off synthesis of new materials/compounds using
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reports, protocols and presentations to share the latest results. Requirements: Preferably a master in chemical/materials/physical engineering. Master's in chemistry, nanoscience and nanotechnology
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and neural interface devices. This research project is highly multidisciplinary and will focus on 2D materials engineering to develop advanced strategies for the modulation of host tissue after surgical
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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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Flexible compensation plan: tax advantages contracting some products (health insurance, childcare, training, among others.) Training activities: languages, mentoring programme, wellbeing programme
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activities: languages, mentoring programme, wellbeing programme. International environment Estimated Incorporation date: as soon as possible How to apply: All applications must be made via the ICN2 website and
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liquid TEM sample holders. Carry out in-situ experiments from the project partners materials and samples. Requirements: BSc and/or MSc in Chemistry, Materials Science, Physics, Nanotechnology or equivalent
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The mission of the Catalan Institute of Nanoscience and Nanotechnology (ICN2) is to achieve the highest level of scientific and technological excellence in Nanoscience and Nanotechnology. Its research lines focus on the newly-discovered physical and chemical properties that arise from the...
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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