Projects

Marialuigia RAIMONDO Projects

3 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

  Data source U-GOV dal 1 Gennaio 2013