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and composition at the atomic scale allowing to understand the growth mechanisms of nanomaterials. We have been able to understand the mechanisms of the polarity-driven growth in free-standing
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in developing and characterizing sustainable polymer/composite materials for agrifood applications. Proficiency in plant-food science is also desirable. A strong command of written and spoken English
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and control of the mechanisms that relate the functionality and supramolecular structure with the microscopic composition of the constituents is key to the development of new intelligent materials and
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, engineering, biochemistry, or a related field, with demonstrated research experience in developing and characterizing sustainable polymer/composite materials for agrifood applications. Proficiency in plant-food
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, the copper-silver-bismuth iodosulphates (CABIS) by designing new strategies for a controlled synthesis of tailored chemical composition to finely tune the material optoelectronic properties. This will be
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and/or plastic waste upgrading to fuels and chemicals. - Familiarity with analytical tools to determine compositions of complex mixtures. - Familiarity with non-conventional heating sources such as
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for a controlled synthesis of tailored chemical composition to finely tune the material optoelectronic properties. This will be achieved by designing new solution-based synthesis approaches for fine
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in CO2 and/or plastic waste upgrading to fuels and chemicals. Familiarity with analytical tools to determine compositions of complex mixtures. Familiarity with non-conventional heating sources such as
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microstructure for standard WC-Co compositions. (2) Adaptation of the process to innovative hard materials grades. Secondments Seco Tools AB (Seco) Universidad Carlos III de Madrid (UC3M) Supervisors - Academic
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of the matrices, gels, and cell-gel composites will be carried out under triaxial unsteady fields in an inverted high-speed confocal rheomicroscope. The candidate will spend 18 months at Nanogetic (Granada, Spain