This paper reports co-crystallization of two atomically precise, different-size ligand-stabilized nanoclusters, a spherical (AuAg)267(SR)80 and a smaller trigonal-prismatic (AuAg)45(SR)27(PPh3)6 in 1:1 ratio, characterized fully by X-ray crystallographic analysis (SR = 2,4-SPhMe2). The larger cluster has a four concentric-shell icosahedral structure of Ag@M12@M42@M92@Ag120(SR)80 (M = Au or Ag) with the inner-core M147 icosahedron observed here for metal nanoparticles. The cluster has an open electron shell of 187 delocalized electrons, fully metallic, plasmonic behavior, and a zero HOMO-LUMO energy gap. The smaller cluster has an 18-electron shell closing, a notable HOMO-LUMO energy gap and a molecule-like optical spectrum. This is the firs...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
Ag and Co metals do not form macroscopic solid or liquid alloys. However, AgmCon clusters have been ...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Reactions between atomically precise noble metal nanoclusters (NCs) have been studied widely in the ...
Reactions between atomically precise noble metal nanoclusters (NCs) have been studied widely in the ...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
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...
Atomically precise pieces of matter of nanometer dimensions composed of noble metals are new categor...
This study examines structural variations found in the atomic ordering of different transition metal...
International audienceControlling the metal nanoclusters with atomic precision is highly difficult a...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
Ag and Co metals do not form macroscopic solid or liquid alloys. However, AgmCon clusters have been ...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Reactions between atomically precise noble metal nanoclusters (NCs) have been studied widely in the ...
Reactions between atomically precise noble metal nanoclusters (NCs) have been studied widely in the ...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Metal clusters have been a subject of interdisciplinary research for many years as they act as a bri...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
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...
Atomically precise pieces of matter of nanometer dimensions composed of noble metals are new categor...
This study examines structural variations found in the atomic ordering of different transition metal...
International audienceControlling the metal nanoclusters with atomic precision is highly difficult a...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
Ag and Co metals do not form macroscopic solid or liquid alloys. However, AgmCon clusters have been ...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...