Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11531/96224
Título : Effect of graphene and graphene oxide addition in crosslinking and mechanical properties of photocurable resins for stereolithography
Autor : López de Armentia Hernández, Sara
Giménez Pérez, Raquel
del Real Romero, Juan Carlos
Serrano Prieto, Berna
Cabanelas Valcarcel, Juan Carlos
Paz Jiménez, Eva
Fecha de publicación : 15-ago-2024
Resumen : 
The mechanical properties of the resins used in stereolithography are often inadequate, prompting studies on their enhancement with nanofillers such as graphene-based nanomaterials (GBNs). GBNs hold promise for enhancing the mechanical performance of photocurable resins, yet their incorporation often leads to unexpected alterations that impact the final nanocomposite. The full spectrum of GBN effects on these resins remains incompletely understood, with many studies reporting suboptimal improvements. This study aims to elucidate the influence of graphene (G) and graphene oxide (GO) on the mechanical properties and polymer structure of an acrylic photocurable resin used in stereolithography. The novelty of this research lies in examining how GBNs affect the polymer structure during polymerization and the degree of crosslinking—parameters that have not been sufficiently explored—and correlating these effects with photopolymerization outcomes. Stereolithography is particularly valuable in biomedicine thanks to its exceptional precision in creating patient-specific models, functional parts, implant devices or scaffolds for tissue engineering, but also various other innovative uses across different industries. Through comprehensive tensile tests, DMTA, DSC, FTIR, and microscopy analyses, it was found that GO enhances tensile strength but reduces the crosslinking degree, thus hindering overall improvements. These findings highlight the critical roles of nanomaterial dispersion, matrix-polymer interaction, and reinforcement in affecting proper crosslinking. Future studies should investigate the impact of varying nanoparticle sizes on crosslinking to further validate these hypotheses.
Descripción : Artículos en revistas
URI : https:doi.org10.36922ijb.4075
http://hdl.handle.net/11531/96224
ISSN : 2424-7723
Aparece en las colecciones: Artículos

Ficheros en este ítem:
Fichero Tamaño Formato  
IIT-24-251R1,16 MBUnknownVisualizar/Abrir


Los ítems de DSpace están protegidos por copyright, con todos los derechos reservados, a menos que se indique lo contrario.