International audienceCoinage-metal atomically precise nanoclusters are made of a well-defined metallic core embedded in a ligand-protecting outer shell. Whereas gold derivatives are particularly well documented, examples of silver nanoclusters are somewhat limited and copper species remain particularly scare. Our DFT relativistic calculations on superatomic metallic cores indicate that copper species are almost as stable as gold clusters and more stable than their silver counterparts. Thus, for silver superatomic cores, the role of the stabilizing ligands is more crucial in the stabilization of the overall structure, in comparison to copper and gold. Hence, the chemistry of the earlier counterparts of gold, especially copper, should grow q...
Atomically precise thiolate-stabilized gold nanoclusters are currently of interest for many cross-di...
Gold and silver nanoclusters are understood as atomically precise particles that consist of a metal ...
The electronic structure of two recently crystallographically solved, thiolate–phosphine protected s...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Abstract:- We investigated the lowest-energy structures of Au, Ag and Cu clusters up to octamer usin...
Ligand-protected nanoclusters (NCs), such as thiolate-protected gold NCs, have been of great interes...
Ligand-protected nanoclusters (NCs), such as thiolate-protected gold NCs, have been of great interes...
International audienceThe bimetallic M(20) and M(21) compounds, {[Cu(3)Ag(17){S(2)P(O(i)Pr)(2)}(12)]...
International audienceThe chalcogenolato silver and copper superatoms are currently a topic of cutti...
Atomically-precise gold nanoclusters (AuNCs) in the tens to hundreds of Au atoms size range can exhi...
Metal nanoclusters can be synthesized in various sizes and shapes and are typically protected with l...
International audienceThe bimetallic M and M compounds, {[CuAg{SP(OPr)}] [CuAg{SP(OPr)}]} ({[1a][1b]...
Ligand-stabilized aluminum clusters are investigated by density functional theory calculations. Anal...
Atomically precise thiolate-stabilized gold nanoclusters are currently of interest for many cross-di...
Gold and silver nanoclusters are understood as atomically precise particles that consist of a metal ...
The electronic structure of two recently crystallographically solved, thiolate–phosphine protected s...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Abstract:- We investigated the lowest-energy structures of Au, Ag and Cu clusters up to octamer usin...
Ligand-protected nanoclusters (NCs), such as thiolate-protected gold NCs, have been of great interes...
Ligand-protected nanoclusters (NCs), such as thiolate-protected gold NCs, have been of great interes...
International audienceThe bimetallic M(20) and M(21) compounds, {[Cu(3)Ag(17){S(2)P(O(i)Pr)(2)}(12)]...
International audienceThe chalcogenolato silver and copper superatoms are currently a topic of cutti...
Atomically-precise gold nanoclusters (AuNCs) in the tens to hundreds of Au atoms size range can exhi...
Metal nanoclusters can be synthesized in various sizes and shapes and are typically protected with l...
International audienceThe bimetallic M and M compounds, {[CuAg{SP(OPr)}] [CuAg{SP(OPr)}]} ({[1a][1b]...
Ligand-stabilized aluminum clusters are investigated by density functional theory calculations. Anal...
Atomically precise thiolate-stabilized gold nanoclusters are currently of interest for many cross-di...
Gold and silver nanoclusters are understood as atomically precise particles that consist of a metal ...
The electronic structure of two recently crystallographically solved, thiolate–phosphine protected s...