Copper sulfide nanostructures: easy synthesis, photocatalytic and doxorubicin anticancer drug delivery applications

In this research, an aqueous reflux method was utilized to synthesize copper sulfide nanostructures with different morphologies, such as flower-like based nanosheets and spherical nanoparticles. The reaction was performed in oleic acid medium, using copper( ii ) acetylacetonate [Cu(acac) 2 ] and ele...

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Veröffentlicht in:New journal of chemistry 2021-12, Vol.45 (47), p.22344-22353
Hauptverfasser: Rafiee, Zahra, Davar, Fatemeh, Hasani, Saeed, Majedi, Ali, Shalan, Ahmed Esmail
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Sprache:eng
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Zusammenfassung:In this research, an aqueous reflux method was utilized to synthesize copper sulfide nanostructures with different morphologies, such as flower-like based nanosheets and spherical nanoparticles. The reaction was performed in oleic acid medium, using copper( ii ) acetylacetonate [Cu(acac) 2 ] and elemental sulfur as the Cu 2+ and S 2− sources, respectively. Then, the effect of refluxing temperature, precursor molar ratios and reaction time on the particle phase and morphology of synthesized particles was investigated. The results show that a 1 : 1 ratio of [Cu (acac) 2 ] to S 2− at 200 °C reflux temperature for 10 h exhibit optimum conditions for forming a pure hexagonal Cu 7.2 S 4 phase. Then, the surface of the synthesized Cu 7.2 S 4 was also modified by hydrophilic polyethylene glycol (PEG), and the modified nanoparticles were used in the release of the drug doxorubicin at pH = 5.4, pH = 7.4 under in vitro conditions, which was monitored by UV-Vis spectroscopy. The results showed that drug release under acidic conditions is greater than that under neutral conditions. Furthermore, by increasing the sulfur content, the sample's morphology was changed from a spherical shape to flower-liked based nanosheets, and the phase tends to be the CuS phase. Finally, the synthesized Cu 7.2 S 4 nanostructures were used for the photocatalytic degradation of some dyes, including Reactive Blue 21 (RB21), Reactive Red 120 (RR120), and Reactive Orange 5 (RO5). The results showed that the highest degradation percentage for RB21 pigment was 99%. Copper sulfide nanostructures with different morphologies were used as a photocatalyst and antitumor drug delivery.
ISSN:1144-0546
1369-9261
DOI:10.1039/d1nj04618g