Effect of Solvent and Reagent Ratio on the Size of Gold Nanoparticles in Nanocomposites Formed in the Redox Reaction of H[AuCl.sub.4] with Two-Dimensional MoS.sub.2

It was shown that the redox reaction of tetrachloroauric acid with exfoliated molybdenum disulfide leads to the formation of Au@MoS.sub.2nanocomposites containing nanoparticles of metallic gold. The reduction rate of the gold(III) is higher in dimethylformamide than in N-methylpyrrolidone. It was sh...

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Published in:Theoretical and experimental chemistry p. 109
Main Authors: Tsymbal, L. V, Lampeka, Ya. D
Format: Journal Article
Language:English
Published: Springer 01-05-2015
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Abstract It was shown that the redox reaction of tetrachloroauric acid with exfoliated molybdenum disulfide leads to the formation of Au@MoS.sub.2nanocomposites containing nanoparticles of metallic gold. The reduction rate of the gold(III) is higher in dimethylformamide than in N-methylpyrrolidone. It was shown that the size of the nanoparticles can be controlled by varying the concentration ratio of the reagents from 2 : 1 to 5 : 1, and under the investigated conditions it increases stepwise from 6.5 to 13 nm.
AbstractList It was shown that the redox reaction of tetrachloroauric acid with exfoliated molybdenum disulfide leads to the formation of Au@MoS.sub.2nanocomposites containing nanoparticles of metallic gold. The reduction rate of the gold(III) is higher in dimethylformamide than in N-methylpyrrolidone. It was shown that the size of the nanoparticles can be controlled by varying the concentration ratio of the reagents from 2 : 1 to 5 : 1, and under the investigated conditions it increases stepwise from 6.5 to 13 nm.
Audience Academic
Author Lampeka, Ya. D
Tsymbal, L. V
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Snippet It was shown that the redox reaction of tetrachloroauric acid with exfoliated molybdenum disulfide leads to the formation of Au@MoS.sub.2nanocomposites...
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SubjectTerms Chemical tests and reagents
Dimethylformamide
Nanoparticles
Title Effect of Solvent and Reagent Ratio on the Size of Gold Nanoparticles in Nanocomposites Formed in the Redox Reaction of H[AuCl.sub.4] with Two-Dimensional MoS.sub.2
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