Principle behind the highest catalytic ability of the least coordinated gold remains a puzzle. With the aid of density functional theory calculations, we show that in 3-coordinated gold cages (i) the Au–Au bond contracts by 5% in average, (ii) the valance density-of-states shift up to Fermi level when the Au55 cluster turns into an Au12 cage, and (iii) the activation energy for CO oxidation drops in sequence, Au55 cluster (13.6 Kcal/mol), Au42 cage (8.0 Kcal/mol), Au13(6.5 Kcal/mol), and Au12 cage (5.1 Kcal/mol), with comparing the reaction paths and spin states. The principle clarified here paves the way for the design of gold nanocatalyst.MOE (Min. of Education, S’pore)Published versio
Recently, it has been reported that the morphology of Au nanoparticles (NPs) affects the catalytic a...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
The transformation of an inert structure into a catalytically active conformation has immense potent...
Gold nanocages are the most attractive catalytic materials as all the atoms in the cage type cluster...
Crystalline surfaces of gold are chemically inert, whereas nanoparticles of gold are excellent catal...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
The origin of the extraordinary catalytic activity of gold nanoparticles is discussed on the basis o...
The morphology of small metal clusters can have a big impact on their electronic, magnetic, and chem...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
The de novo design of nanocatalysts with high activity is a challenging task, since prediction of ca...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We suggest that the reactivity of Au nanocatalysts can be greatly increased by doping the oxide subs...
We report a systematic study of CO oxidation mechanism over nanoporous (NPG) using the density funct...
Gold nanoclusters with diameters in the quantum size regime (\u3c ~2 nm) are promising building bloc...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
Recently, it has been reported that the morphology of Au nanoparticles (NPs) affects the catalytic a...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
The transformation of an inert structure into a catalytically active conformation has immense potent...
Gold nanocages are the most attractive catalytic materials as all the atoms in the cage type cluster...
Crystalline surfaces of gold are chemically inert, whereas nanoparticles of gold are excellent catal...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
The origin of the extraordinary catalytic activity of gold nanoparticles is discussed on the basis o...
The morphology of small metal clusters can have a big impact on their electronic, magnetic, and chem...
New low-energy atomic structures of the thiolate-protected gold nanoparticle Au68(SH)32 are uncovere...
The de novo design of nanocatalysts with high activity is a challenging task, since prediction of ca...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We suggest that the reactivity of Au nanocatalysts can be greatly increased by doping the oxide subs...
We report a systematic study of CO oxidation mechanism over nanoporous (NPG) using the density funct...
Gold nanoclusters with diameters in the quantum size regime (\u3c ~2 nm) are promising building bloc...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
Recently, it has been reported that the morphology of Au nanoparticles (NPs) affects the catalytic a...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
The transformation of an inert structure into a catalytically active conformation has immense potent...