Gold nanoparticles and sub-nanoparticles famously act as highly efficient and selective low-temperature oxidation catalysts with molecular oxygen, in stark contrast to the nobility of the bulk phase. The origins of this activity and the nature of the active species remain open questions. Gas-phase studies of isolated gold clusters hold promise for disentangling these problems. Here we address the interaction of neutral gold clusters (Au<sub>n</sub>; 4 ≤ n ≤ 21) with molecular oxygen by probing the highly characteristic O–O vibrational stretch frequencies. This reveals that for selected cluster sizes the oxygen is highly activated with respect to the free moiety. Complementary quantum chemical calculations provide evidence for substantial el...
With the aim of understanding the elementary steps governing the oxidation of CO catalyzed by disper...
Experimental evidences for the non-dissociative chemisorption of O2 are presented on even-numbered f...
The structure, electronic properties, and catalytic activity toward oxygen activation of gold nanocl...
Gold nanoparticles and sub-nanoparticles famously act as highly efficient and selective low-temperat...
Gold nanoparticles and sub-nanoparticles famously act as highly efficient and selective low-temperat...
A golden opportunity: Molecular oxygen is found to be converted into a superoxo (O2−) species upon c...
The molecular and dissociative adsorption of O<sub>2</sub> on pure odd-size Au<sub><i>n</i></sub> (<...
The activation of dioxygen is a key step in CO oxidation catalyzed by gold nanoparticles. It is know...
Using oxygen activation and carbon monoxide oxidation as a probe, we have carried out density functi...
Theoretical evidence is presented for the molecular and dissociative adsorption of O2 on...
The interaction of O2 with charged and neutral gold clusters, AuN- and AuN containing up to eight at...
Experimental and theoretical evidence is presented for the nondissociative chemisorption of O2on fre...
The structure, electronic properties, and catalytic activity towards oxygen activation of gold nanoc...
The gold–hydrogen analogy is well established in terms of analogous chemistry exhibited by gold and ...
A study was performed on the interaction of oxygen with small gold clusters. The geometry and the bi...
With the aim of understanding the elementary steps governing the oxidation of CO catalyzed by disper...
Experimental evidences for the non-dissociative chemisorption of O2 are presented on even-numbered f...
The structure, electronic properties, and catalytic activity toward oxygen activation of gold nanocl...
Gold nanoparticles and sub-nanoparticles famously act as highly efficient and selective low-temperat...
Gold nanoparticles and sub-nanoparticles famously act as highly efficient and selective low-temperat...
A golden opportunity: Molecular oxygen is found to be converted into a superoxo (O2−) species upon c...
The molecular and dissociative adsorption of O<sub>2</sub> on pure odd-size Au<sub><i>n</i></sub> (<...
The activation of dioxygen is a key step in CO oxidation catalyzed by gold nanoparticles. It is know...
Using oxygen activation and carbon monoxide oxidation as a probe, we have carried out density functi...
Theoretical evidence is presented for the molecular and dissociative adsorption of O2 on...
The interaction of O2 with charged and neutral gold clusters, AuN- and AuN containing up to eight at...
Experimental and theoretical evidence is presented for the nondissociative chemisorption of O2on fre...
The structure, electronic properties, and catalytic activity towards oxygen activation of gold nanoc...
The gold–hydrogen analogy is well established in terms of analogous chemistry exhibited by gold and ...
A study was performed on the interaction of oxygen with small gold clusters. The geometry and the bi...
With the aim of understanding the elementary steps governing the oxidation of CO catalyzed by disper...
Experimental evidences for the non-dissociative chemisorption of O2 are presented on even-numbered f...
The structure, electronic properties, and catalytic activity toward oxygen activation of gold nanocl...