Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet critically important for understanding the properties and developing applications. Herein, we report a stable silver nanoclusterAg146Br2(SR)80 (where SR = 4-isopropylbenzenethiolate)with its structure solved by X-ray crystallography. Gram-scale synthesis with high yield has been achieved by a one-pot reaction, which offers opportunities for functionalization and applications. This silver nanocluster possesses a core–shell structure with a Ag51 core surrounded by a shell of Ag95Br2S80. The Ag51 core can be viewed as a distorted decahedron, endowing this nanocluster with quantized electronic transitions. In the surface-protecting layer, five diff...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
The atomic precision of ultrasmall metal nanoclusters has opened the door to elucidating the structu...
We report the synthesis of atomically monodisperse thiol-protected silver nanoclusters [Ag-44(SR)(30...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
This paper reports co-crystallization of two atomically precise, different-size ligand-stabilized na...
The crystal structure of the [Ag62S12(SBut)32](2+) nanocluster (denoted as NC-I) has been successful...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
The controlling synthesis of novel nanoclusters of noble metals (Au, Ag) and the determination of th...
International audienceControlling the metal nanoclusters with atomic precision is highly difficult a...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
The atomic precision of ultrasmall metal nanoclusters has opened the door to elucidating the structu...
We report the synthesis of atomically monodisperse thiol-protected silver nanoclusters [Ag-44(SR)(30...
Solving the atomic structure of large-sized metal nanoclusters is a highly challenging task yet crit...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
Understanding the optical properties of nanoclusters is one of the central tasks in fundamental rese...
This paper reports co-crystallization of two atomically precise, different-size ligand-stabilized na...
The crystal structure of the [Ag62S12(SBut)32](2+) nanocluster (denoted as NC-I) has been successful...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements ...
The controlling synthesis of novel nanoclusters of noble metals (Au, Ag) and the determination of th...
International audienceControlling the metal nanoclusters with atomic precision is highly difficult a...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
The atomic precision of ultrasmall metal nanoclusters has opened the door to elucidating the structu...
We report the synthesis of atomically monodisperse thiol-protected silver nanoclusters [Ag-44(SR)(30...