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Thermo- and Photoresponsive Smart Nanomaterial Based on Poly(diethyl vinyl phosphonate)-Capped Gold Nanoparticles

Academic Article
Publication Date:
2024
abstract:
A new nanodevice based on gold nanoparticles (AuNPs) capped with poly(diethylvinylphosphonate) (PDEVP) has been synthesized, showing interesting photophysical and thermoresponsive properties. The synthesis involves a properly designed Yttriocene catalyst coordinating the vinyl-lutidine (VL) initiator active in diethyl vinyl phosphonate polymerization. The unsaturated PDEVP chain ending was thioacetylated, deacetylated, and reacted with tetrachloroauric acid and sodium borohydride to form PDEVP-VL-capped AuNPs. The NMR, UV–Vis, and ESI-MS characterization of the metal nanoparticles confirmed the formation of the synthetic intermediates and the expected colloidal systems. AuNPs of subnanometric size were determined by WAXD and UV–Vis analysis. UV–Vis and fluorescence analysis confirmed the effective anchoring of the thiolated PDEVP to AuNPs. The formation of 50–200 nm globular structures was assessed by SEM and AFM microscopy in solid state and confirmed by DLS in aqueous dispersion. Hydrodynamic radius studies showed colloidal contraction with temperature, demonstrating thermoresponsive behavior. These properties suggest potential biomedical applications for the photoablation of malignant cells or controlled drug delivery induced by light or heat for the novel PDEVP-capped AuNP systems.
Iris type:
Articolo su Rivista
Keywords:
thermoresponsive; photoresponsive; gold nanoparticles; LCST; FRET; smart; nanomaterial; poly(phosphonate); group transfer polymerization; yttrium
List of contributors:
Buonerba, Antonio; Lapenta, Rosita; Della Monica, Francesco; Piacentini, Roberto; Baldino, Lucia; Scognamiglio, Maria Rosa; Speranza, Vito; Milione, Stefano; Capacchione, Carmine; Rieger, Bernhard; Grassi, Alfonso
Authors of the University:
DELLA MONICA FRANCESCO
Handle:
https://irinsubria.uninsubria.it/handle/11383/2180951
Full Text:
https://irinsubria.uninsubria.it//retrieve/handle/11383/2180951/312297/nanomaterials-14-01589.pdf
Published in:
NANOMATERIALS
Journal
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URL

https://doi.org/10.3390/nano14191589
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