Thiol-stabilized Au\u2082\u2085L\u2081\u2088 monolayer protected clusters (MPCs) were found to be active for the reduction of 4-nitrophenol. Results suggest that these MPCs are stable catalysts and do not lose their structural integrity during the catalytic process. High stability under the reaction conditions enables the recyclability of these MPCs.Peer reviewed: YesNRC publication: Ye
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on th...
We investigate the distinctly different interaction of thiolate-protected cluster Au38(SC2H4Ph)24 wi...
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on t...
NSERCPeer ReviewedWe show the thermal activation of phenylethanethiolate (L = SC8H9) and hexanethiol...
We show the thermal activation of phenylethanethiolate (L = SC\u2088H\u2089) and hexanethiolate (L =...
This thesis investigates the synthesis and activation of highly monodisperse Au25(SR)18 - clusters a...
A trio of thiolate-protected atomically precise gold nanoclusters, [Au23(S-c-C6H11)16]–, Au24(SCH2pH...
AbstractA trio of thiolate-protected atomically precise gold nanoclusters, [Au23(S-c-C6H11)16]–, Au2...
Here we report a successful synthesis of water-soluble 13-atoms gold clusters under the monolayer pr...
A synthesis strategy to obtain monodisperse hexanethiolate-protected Au38 clusters based on their re...
NSERCPeer ReviewedAl2O3-supported Au25(SC8H9)18 clusters with various Au loadings were thermally and...
Quasi-homogeneous ligand-protected gold nanoclusters (Au NCs) with atomic precision and well-defined...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
Protective ligands are key components of ligand‐protected metal nanoclusters (NCs), as they offer go...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine-tu...
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on th...
We investigate the distinctly different interaction of thiolate-protected cluster Au38(SC2H4Ph)24 wi...
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on t...
NSERCPeer ReviewedWe show the thermal activation of phenylethanethiolate (L = SC8H9) and hexanethiol...
We show the thermal activation of phenylethanethiolate (L = SC\u2088H\u2089) and hexanethiolate (L =...
This thesis investigates the synthesis and activation of highly monodisperse Au25(SR)18 - clusters a...
A trio of thiolate-protected atomically precise gold nanoclusters, [Au23(S-c-C6H11)16]–, Au24(SCH2pH...
AbstractA trio of thiolate-protected atomically precise gold nanoclusters, [Au23(S-c-C6H11)16]–, Au2...
Here we report a successful synthesis of water-soluble 13-atoms gold clusters under the monolayer pr...
A synthesis strategy to obtain monodisperse hexanethiolate-protected Au38 clusters based on their re...
NSERCPeer ReviewedAl2O3-supported Au25(SC8H9)18 clusters with various Au loadings were thermally and...
Quasi-homogeneous ligand-protected gold nanoclusters (Au NCs) with atomic precision and well-defined...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
Protective ligands are key components of ligand‐protected metal nanoclusters (NCs), as they offer go...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine-tu...
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on th...
We investigate the distinctly different interaction of thiolate-protected cluster Au38(SC2H4Ph)24 wi...
In this work, the effects of thiolate ligands (-SR, e.g., chain length and functional moiety) on t...