Projects

Marialuigia RAIMONDO Projects

4 Funded projects
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This study focuses on epoxy hybrid systems prepared by dispersing multi-wall carbon nanotubes (MWCNTs) and graphene nanosheets (GNs) at two fixed filler amounts: below (0.1 wt%) and above (0.5 wt%), with varying MWCNT:GN mix ratios. The hybrid systems will be designed to exhibit remarkable electrical performance, attributed to the πâ¿¿π bond interactions between MWCNTs and GNs. The materia
DepartmentDipartimento di Ingegneria Industriale/DIIN
Principal InvestigatorRAIMONDO Marialuigia (Project Coordinator)
FundingUniversity funds
FundersUniversità  degli Studi di SALERNO
Cost2.810,00 euro
Project duration25 November 2024 - 25 November 2028
Detail
The main objective of the research activity is to demonstrate the synergistic effect of the two conductive nanofillers, multi-wall carbon nanotubes (MWCNTs) and graphene nanosheets (GNs), loaded at two total fixed amounts (0.1 and 0.5 wt%) and different MWCNTs:GNPs mix ratios, on the electrical properties of nanohybrid systems by a combined computational and experimental approach. The first, allow
DepartmentDipartimento di Ingegneria Industriale/DIIN
Principal InvestigatorRAIMONDO Marialuigia (Project Coordinator)
FundingUniversity funds
FundersUniversità  degli Studi di SALERNO
Cost3.190,00 euro
Project duration31 July 2023 - 31 July 2026
Detail
The main objective of this research activity will be the development of a highly performing resin suitably designed to satisfy structural and functional requirements of the aerospace industry. The new multifunctional material will be prepared by incorporating in the epoxy matrix conductive heat-treated carbon nanofibers (CNFs) and fire retardant glycidyl polyhedral oligomeric silsesquioxane (GPOSS
DepartmentDipartimento di Ingegneria Industriale/DIIN
Principal InvestigatorRAIMONDO Marialuigia (Project Coordinator)
FundingUniversity funds
FundersUniversità  degli Studi di SALERNO
Cost2.970,00 euro
Project duration25 July 2022 - 25 July 2025
Detail
The main objective of this research activity will be the study of new kinds of functionalization procedures able to preserve specific properties of carbon nanomaterials (CNs) and to improve compatibility with the epoxy matrix, thus leading to nanohybrids with enhanced functional and structural properties. The idea is to functionalize CNs, through a covalent approach, with the same hardener agent,
DepartmentDipartimento di Ingegneria Industriale/DIIN
Principal InvestigatorRAIMONDO Marialuigia (Project Coordinator)
FundingUniversity funds
FundersUniversità  degli Studi di SALERNO
Cost3.310,00 euro
Project duration22 November 2021 - 22 November 2024
Proroga25 Luglio 2025
Detail

  Data source U-GOV dal 1 Gennaio 2013