Literature DB >> 20180591

Direct synthesis of large water-soluble functionalized gold nanoparticles using Bunte salts as ligand precursors.

Samuel E Lohse1, Jennifer A Dahl, James E Hutchison.   

Abstract

The widespread use of functionalized gold nanoparticles (AuNPs) in a rapidly increasing number of sensing and biomedical applications has made the development of synthetic methods that combine precise surface chemistry control (functionality) with effective core size control over the range of 1-20 nm crucial. Although a variety of effective methods exist for controlling the core size and functionality during gold nanoparticle synthesis, there is a lack of synthetic methods that permit the direct synthesis of thiol-protected gold nanoparticles with core diameters greater than 5.0 nm. Inspired by previous reports on the use of alkyl thiosulfates (Bunte salts) as ligand precursors, we anticipated that the slow passivation kinetics of these masked thiols would provide a method to synthesize large functionalized AuNPs directly. We found that Bunte salts produce larger AuNPs under the same synthesis conditions than do thiols. We investigated the effect of the ligand/gold ratio, temperature, and reducing agent concentration on the particle diameter and dispersity to understand better how to control particle size. The AuNP core size can be systematically controlled by varying the ratio of ligand precursor/gold (L/Au) and the temperature of the reaction. The synthesis produces functionalized AuNPs ranging from 1.5 to 20.0 nm in diameter. The use of Bunte salts provides a convenient synthetic platform for the synthesis of AuNPs across this size range that possess a variety of surface functionalities, including positive, negative, and neutral functional groups.

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Year:  2010        PMID: 20180591     DOI: 10.1021/la904306a

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  12 in total

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6.  Iodine activation: a general method for catalytic enhancement of thiolate monolayer-protected metal clusters.

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7.  Controlling surface ligand density and core size of alkanethiolate-capped Pd nanoparticles and their effects on catalysis.

Authors:  Diego J Gavia; Young-Seok Shon
Journal:  Langmuir       Date:  2012-09-24       Impact factor: 3.882

8.  Water-soluble Pd nanoparticles synthesized from ω-carboxyl-S-alkanethiosulfate ligand precursors as unimolecular micelle catalysts.

Authors:  Diego J Gavia; May S Maung; Young-Seok Shon
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9.  Mono- and bi-functional arenethiols as surfactants for gold nanoparticles: synthesis and characterization.

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10.  Mechanistic Insights into the Formation of Dodecanethiolate-Stabilized Magnetic Iridium Nanoparticles: Thiosulfate vs Thiol Ligands.

Authors:  Diego J Gavia; Yeonjin Do; Jiyeong Gu; Young-Seok Shon
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2014-06-12       Impact factor: 4.126

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