Gold superatom nanoclusters stabilized entirely by N-heterocyclic carbenes (NHCs) are reported. The reduction of well-defined NHC–Au–Cl complexes produces clusters com-prised of an icosahedral Au13 core surrounded by a symmetrical arrangement of 9 NHCs and 3 chlorides. X-ray crystallography shows that the clusters are characterized by multiple CH–π and π–π interactions, which rigidify the ligand and likely con-tribute to the exceptionally high photoluminescent quantum yields observed, up to 16.0 %, which is significantly greater than the most luminescent ligand-protected Au13 superatom cluster. Density functional theory analysis suggests that clus-ters are 8-electron superatoms with a wide HOMO-LUMO energy gap of 2 eV. Consistent with this,...
The work reported therein deals principally with the investigation by density functional theory (DFT...
Deciphering the molecular pictures of the multi-component and non-periodic organic-inorganic interla...
Magic number metal nanoclusters are atomically precise nanomaterials that have enabled unprecedented...
International audienceAtomically precise gold nanoclusters (AuNCs) belong to a relevant area oflerin...
p.p1 {margin: 0.0px 0.0px 0.0px 0.0px; line-height: 20.0px; font: 17.4px Helvetica; color: #000000; ...
Herein, we report a new method to synthesize molecular gold nanoclusters (AuNCs) stabilized by phosp...
Herein, we describe the synthesis of a toroidal Au10 cluster stabilized by N-heterocyclic carbene an...
International audienceThe structure and bonding of a series of selected phosphine-protected gold clu...
Gold clusters are useful templates for nanosized species retaining a distinctive size-dependent beha...
Herein, we report a new method to synthesize molecular gold nanoclusters (AuNCs) stabilized by phosp...
International audienceThe controlled structural modification of ligand-protected gold clusters is ev...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
The work reported therein deals principally with the investigation by density functional theory (DFT...
Surface organic ligands play a critical role in stabilizing atomically precise metal nanoclusters in...
Three novel bimetallic Au-Cu nanoclusters stabilized by a mixed layer of thiolate and phosphine liga...
The work reported therein deals principally with the investigation by density functional theory (DFT...
Deciphering the molecular pictures of the multi-component and non-periodic organic-inorganic interla...
Magic number metal nanoclusters are atomically precise nanomaterials that have enabled unprecedented...
International audienceAtomically precise gold nanoclusters (AuNCs) belong to a relevant area oflerin...
p.p1 {margin: 0.0px 0.0px 0.0px 0.0px; line-height: 20.0px; font: 17.4px Helvetica; color: #000000; ...
Herein, we report a new method to synthesize molecular gold nanoclusters (AuNCs) stabilized by phosp...
Herein, we describe the synthesis of a toroidal Au10 cluster stabilized by N-heterocyclic carbene an...
International audienceThe structure and bonding of a series of selected phosphine-protected gold clu...
Gold clusters are useful templates for nanosized species retaining a distinctive size-dependent beha...
Herein, we report a new method to synthesize molecular gold nanoclusters (AuNCs) stabilized by phosp...
International audienceThe controlled structural modification of ligand-protected gold clusters is ev...
Synthesis, characterization, and functionalization of self-assembled, ligand-stabilized gold nanopar...
The work reported therein deals principally with the investigation by density functional theory (DFT...
Surface organic ligands play a critical role in stabilizing atomically precise metal nanoclusters in...
Three novel bimetallic Au-Cu nanoclusters stabilized by a mixed layer of thiolate and phosphine liga...
The work reported therein deals principally with the investigation by density functional theory (DFT...
Deciphering the molecular pictures of the multi-component and non-periodic organic-inorganic interla...
Magic number metal nanoclusters are atomically precise nanomaterials that have enabled unprecedented...