Luminescent Ag clusters are prepared with lipoic acid (LA) as the ligand. Using a combination of mass spectrometry, optical spectroscopy and analytical ultracentrifugation, the clusters are found to be highly monodisperse with mass 5.6 kDa. We assign the chemical composition [Ag29(LA)12](3-) to the clusters, where LA likely binds in a bidentate fashion. The Ag29 clusters show slow degradation, retaining their deep red emission for at least 18 months if stored in the dark. Purification or exposure to light results in faster degradation. No other cluster species are observed during the degradation process. Once degraded, the clusters could easily be regenerated using NaBH4, which is not usually observed for thiolate-capped Ag clusters
Luminescent Ag15 clusters confined in bovine serum albumin (BSA) have been prepared by a simple wet ...
The current understanding of the synthesis mechanisms of noble metal clusters is limited, in particu...
Recently developed synthesis methods allow for the production of atomically monodisperse clusters of...
Luminescent Ag clusters are prepared with lipoic acid (LA) as the ligand. Using a combination of mas...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
ABSTRACT: We report a one-step and high yield synthesis of a red-luminescent silver cluster with the...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
A silver cluster having the composition Ag9(H2MSA)7 (H2MSA = mercaptosuccinic acid) was synthesized ...
We report the synthesis of luminescent Ag clusters through the interfacial etching of mercaptosuccin...
Luminescent Ag15 clusters confined in bovine serum albumin (BSA) have been prepared by a simple wet ...
The current understanding of the synthesis mechanisms of noble metal clusters is limited, in particu...
Recently developed synthesis methods allow for the production of atomically monodisperse clusters of...
Luminescent Ag clusters are prepared with lipoic acid (LA) as the ligand. Using a combination of mas...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
Gold and silver clusters with sizes up to ∼100 atoms have unique properties, such as luminescence, t...
ABSTRACT: We report a one-step and high yield synthesis of a red-luminescent silver cluster with the...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
Ag29 nanoclusters capped with lipoic acid (LA) can be doped with Au. The doped clusters show enhance...
A silver cluster having the composition Ag9(H2MSA)7 (H2MSA = mercaptosuccinic acid) was synthesized ...
We report the synthesis of luminescent Ag clusters through the interfacial etching of mercaptosuccin...
Luminescent Ag15 clusters confined in bovine serum albumin (BSA) have been prepared by a simple wet ...
The current understanding of the synthesis mechanisms of noble metal clusters is limited, in particu...
Recently developed synthesis methods allow for the production of atomically monodisperse clusters of...