Affiliation:
1. Faculty of Chemistry and Pharmacy, Sofia University St. Kliment Ohridski, J. Bourchier Blvd. 1, 1164 Sofia, Bulgaria
Abstract
A novel, one-pot sol–gel preparation scheme leading to reproducible incorporation of 20–40 nm sized gold nanoparticles (AuNPs) in SiO2 gels is developed based on in situ reduction during gelation using chloroauric acid and ascorbic acid. Variation in the preparation conditions affects the chemical composition, optical properties and size distribution of the AuNPs incorporated in the silica gels. Different organic dopants, i.e., oleic acid, acetic acid or dodecanethiol, are applied to modify the final composite material and to control the rate of reduction and growth of the AuNPs in the gels. The synthesized samples are characterized by UV/Vis/NIR spectroscopy, X-ray diffraction, transmission electron microscopy, thermal conductivity measurements and DTA/TG measurements. The optical properties of the obtained composites are explained using Mie theory. The incorporation of AuNPs leads to an increase in the thermal conductivity of the silica gels. The best process method in this contribution is the use of NaOH as a gelation catalyst and oleic acid as an organic modifier, leading to 20 nm AuNPs dispersed in the silica matrix.
Subject
Polymers and Plastics,Organic Chemistry,Biomaterials,Bioengineering
Reference37 articles.
1. Noble Metal Aerogels Synthesis, Characterization, and Application as Electrocatalysts;Liu;Acc. Chem. Res.,2015
2. Ayala, P., Giesriegl, A., Nandan, S.P., Myakala, S.N., Wobrauschek, P., and Cherevan, A. (2021). Isolation Strategy towards Earth-Abundant Single-Site Co-Catalysts for Photocatalytic Hydrogen Evolution Reaction. Catalysts, 11.
3. A New Method for Studying the Kinetics of Synthesis of Gold Nanoparticles in Hexadecylanilin Monolayer at the Air/Water Interface by Means of Atomic Force Microscopy;Georgiev;Comptes Rendus L’academie Bulg. Des Sci.,2020
4. Dependence of Plasmon Spectra of Small Gold Nanoparticles from Their Size: An Atomic Force Microscopy Experimental Approach;Georgiev;Plasmonics,2020
5. Au Catalyst Decorated Silica Spheres: Synthesis and High-Performance in 4-Nitrophenol Reduction;Zhang;J. Nanosci. Nanotechnol.,2016
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