Gold nanorods (AuNRs) are successfully employed in drug delivery, biosensors, and biotechnologies. Their wide success is due to their unique chemical properties, biocompatibility, easy, cheap and versatile synthesis. In this framework, AuNRs were synthetized with the aim to obtain strongly hydrophilic nanomaterials, suitable as drug delivery system. AuNRs were synthetized by seed mediated methods in two steps. After careful purification AuNRs were investigated by means of UV-Vis-NIR showing typical surface plasmon resonance (SPR) bands at 550 nm and 970 nm. The Fourier Transform Infrared Spectroscopy (FT-IR) and High-resolution X-ray photoelectron Spectroscopy (HR-XPS) investigations verified the surface functionalization by ascorbic acid (AA) and cetyl trimethyl ammonium bromide (CTAB) and allowed to examine the chemical structure and the interaction between capping agent and metal surface. Moreover, transmission electron microscopy (TEM) observations showed AuNRs with regular shape and size in the range of 20-80 nm. These results point to AuNRs as promising systems for drug delivery applications.

Venditti, I., Stringaro, A., Colone, M., Calcabrini, A., Dini, V., Iucci, G., et al. (2021). Hydrophilic gold nanorods for biotechnological applications. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? NANOINNOVATION 2020, Rome, Italy [10.1063/5.0069404].

Hydrophilic gold nanorods for biotechnological applications

Venditti, Iole
;
Tortora, Luca;Marsotto, Martina;
2021-11-05

Abstract

Gold nanorods (AuNRs) are successfully employed in drug delivery, biosensors, and biotechnologies. Their wide success is due to their unique chemical properties, biocompatibility, easy, cheap and versatile synthesis. In this framework, AuNRs were synthetized with the aim to obtain strongly hydrophilic nanomaterials, suitable as drug delivery system. AuNRs were synthetized by seed mediated methods in two steps. After careful purification AuNRs were investigated by means of UV-Vis-NIR showing typical surface plasmon resonance (SPR) bands at 550 nm and 970 nm. The Fourier Transform Infrared Spectroscopy (FT-IR) and High-resolution X-ray photoelectron Spectroscopy (HR-XPS) investigations verified the surface functionalization by ascorbic acid (AA) and cetyl trimethyl ammonium bromide (CTAB) and allowed to examine the chemical structure and the interaction between capping agent and metal surface. Moreover, transmission electron microscopy (TEM) observations showed AuNRs with regular shape and size in the range of 20-80 nm. These results point to AuNRs as promising systems for drug delivery applications.
NANOINNOVATION 2020
Rome, Italy
2020
Rilevanza internazionale
5-nov-2021
Settore CHIM/03
Settore CHEM-06/A - Fondamenti chimici delle tecnologie
English
Article number: 020019
Intervento a convegno
Venditti, I., Stringaro, A., Colone, M., Calcabrini, A., Dini, V., Iucci, G., et al. (2021). Hydrophilic gold nanorods for biotechnological applications. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? NANOINNOVATION 2020, Rome, Italy [10.1063/5.0069404].
Venditti, I; Stringaro, A; Colone, M; Calcabrini, A; Dini, V; Iucci, G; Tortora, L; Marsotto, M; Battocchio, C
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/364724
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