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- ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - CENTRO INTERDIPARTIMENTALE DI RICERCA PER LE SCIENZE AMBIENTALI - CIRSA
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- PIANO NAZIONALE DI RIPRESA E RESILIENZA (PNRR) MISSIONE 4 - COMPONENTE 2 - INVESTIMENTO 1.3 FINANZIATO DALL’UNIONE EUROPEA – NEXT GENERATION EU PE00000004 M4C2 -1.3
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of functional groups present in both polymers and additives to optimize the interaction between the polymer matrix and the additives used; as well as their modification as a result of extractive processes
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multi-material (metal-polymer) functional devices that minimise the need for assembly. The focus will be on the fabrication of functionalised metal structures to optimise joining with the polymer
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of polymers and copolymers for additive manufacturing. Particular attention will be paid to the synthesis polymers and composite, eventually photocurable, to be used in additi Requirements Additional
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PIANO NAZIONALE DI RIPRESA E RESILIENZA (PNRR) MISSIONE 4 - COMPONENTE 2 - INVESTIMENTO 1.3 FINANZIATO DALL’UNIONE EUROPEA – NEXT GENERATION EU PE00000004 M4C2 -1.3 | Italy | about 1 month ago
counterparts. We have recently introduced graded foams in thermoplastic polymers, achieved through time-varying the boundary conditions of the mass transport of the physical blowing agent to induce a non-uniform
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characterization of new molecules and polymers to interface microorganisms with electrodes. Moreover, different strategies of chemical functionalization (SAMs, protein monolayers, self-adherence, in-situ
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - CENTRO INTERDIPARTIMENTALE DI RICERCA PER LE SCIENZE AMBIENTALI - CIRSA | Italy | about 1 month ago
to separate the biomass from the shells, cultivation of the bacteria to obtain the accumulation of PHA, extraction of the polymer; • improvement of process modeling and insertion of inventory data into the LCA
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the research group: • development of polymer matrix composite materials, their synthesis and functional and structural characterization; • synthesis of nanometric inorganic fillers for composites; • study and
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characterization, of new blend of miscible and compatible polymers of natural extraction in the formulation of hydrogel and aerogel. Blends will be obtained based on physical crosslinking though intermolecular
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systems. In this project, smart materials (e.g., synthetic polymers) and devices (such as sensors) will be interfaced with biological systems (e.g., cell cultures) to monitor and modulate their properties
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innovative configurations of the electroactive polymer materials to obtain more complex and advanced morphing. At the end of the Ph.D., the candidate will deliver a functional prototype of active mechanical