Here, we study the stability of the 2D organization of thiol-coated silver nanoparticles (NPs) by transmission electron microscopy. Whatever the alkyl chain length and the nature of the silver precursor, we show the rapid corrosion (over a few days) of the NPs by O<sub>2</sub> from laboratory air whereas they remain stable for several weeks under a nitrogen atmosphere. We show that this phenomenon is amplified by the humidity in the air and by thiols trapped in the NP monolayers. We obtain evidence of these thiols in excess by infrared and energy-dispersive spectroscopies. This study of stability has been extended to gold nanoparticles (AuNPs) coated with dodecanethiols. The AuNPs remain stable under laboratory air because of the higher red...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
In this study, X-ray photoelectron spectroscopy (XPS) has been used to study thin organic films. For...
Silver nanoparticles are notoriously susceptible to oxidation, yet gold nanoparticles coated in silv...
Understanding and controlling the sintering behavior of gold nanoparticles is important for applicat...
Silver nanoparticles have been modeled by density functional theory calculations and ab initio molec...
Even though it is a noble metal, silver will corrode in ambient atmospheres, predominantly by reacti...
The interaction between citrate capped silver nanoparticles and two different thiols, mercaptohexano...
Up to date, the influence of ambient air exposure on the energetics and stability of silver clusters...
International audienceGrafting thiol-bearing molecules at the surface of silver nano-particles (AgNP...
Noble metal nanoclusters (NCs) protected with thiolate ligands have been of interest because of thei...
Metal-organic composites are of great interest for a wide range of applications. The control of thei...
The stability of thiol bonding on the surface of star-shaped gold nanoparticles was studied as a fu...
Using propanethiol (PrT), 2-mercaptoethanol (ME), glutathione (GSH), and cysteine (Cys) as model thi...
Size-dependent properties of surface-confined inorganic nanostructures are of interest for applicati...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
In this study, X-ray photoelectron spectroscopy (XPS) has been used to study thin organic films. For...
Silver nanoparticles are notoriously susceptible to oxidation, yet gold nanoparticles coated in silv...
Understanding and controlling the sintering behavior of gold nanoparticles is important for applicat...
Silver nanoparticles have been modeled by density functional theory calculations and ab initio molec...
Even though it is a noble metal, silver will corrode in ambient atmospheres, predominantly by reacti...
The interaction between citrate capped silver nanoparticles and two different thiols, mercaptohexano...
Up to date, the influence of ambient air exposure on the energetics and stability of silver clusters...
International audienceGrafting thiol-bearing molecules at the surface of silver nano-particles (AgNP...
Noble metal nanoclusters (NCs) protected with thiolate ligands have been of interest because of thei...
Metal-organic composites are of great interest for a wide range of applications. The control of thei...
The stability of thiol bonding on the surface of star-shaped gold nanoparticles was studied as a fu...
Using propanethiol (PrT), 2-mercaptoethanol (ME), glutathione (GSH), and cysteine (Cys) as model thi...
Size-dependent properties of surface-confined inorganic nanostructures are of interest for applicati...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
The electronic and molecular structure, as well as the chemical nature of noble metal (silver, gold)...
In this study, X-ray photoelectron spectroscopy (XPS) has been used to study thin organic films. For...