Synergistic effects have been discussed extensively in bimetallic heterogeneous catalysis, but it remains unclear how the effects function at the atomic scale. Here, we report a dual single-atom catalyst (DSAC) Ir1Mo1/TiO2 displaying much greater catalytic chemoselectivity (>96%, at 100% conversion) than comparable single-atom catalysts (SACs) Ir1/TiO2 (38%, at 87% conversion) and Mo1/TiO2 (no activity) for the hydrogenation of 4-nitrostyrene (4-NS) to 4-vinylaniline (4-VA). Activation of the TiO2-supported bimetallic carbonyl cluster Ir2Mo2(CO)10(η5 - C5H5)2 in an Ar atmosphere affords the DSAC Ir1Mo1/TiO2. Characterization of the dual single-atom structure confirms that it consists of well-dispersed Ir single atoms (Ir1) and Mo single ato...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Supported single atoms constitute excellent models for understanding heterogenous catalysis and have...
SSCI-VIDE+ECI2D+LPIInternational audienceRecent progress in nanomaterials preparation, characterizat...
Introducing appropriate dual cocatalysts is one of the most efficient strategies to improve the phot...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
MICROSCOPIE+CDURABLE:CATREN:ING+TLN:PAF:LCS:NPR:MAO:FMO:LPINational audienceEnvironmental concerns i...
Summary: Here, we evaluate three different noble metal co-catalysts (Pd, Pt, and Au) that are presen...
Heterogeneous single-atom catalysts (SACs) with atomically dispersed active metal centers represent ...
Metal–support interactions are of significance in clarifying the support–activity relationship over ...
Compared to homogeneous catalysis, heterogeneous catalysis allows for ready separation of products f...
Here, we evaluate three different noble metal co-catalysts (Pd, Pt, and Au) that are present as sing...
International audienceCatalytic active sites consisting in isolated metal single atoms can be found ...
H2 activation is fundamental in catalysis. Single-atom catalysts (SACs) can be highly selective hydr...
Tuning CO2 hydrogenation selectivity to obtain targeted value-added chemicals and fuels has attracte...
Single atom catalysis (SAC) is a recent discipline of heterogeneous catalysis for which a single ato...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Supported single atoms constitute excellent models for understanding heterogenous catalysis and have...
SSCI-VIDE+ECI2D+LPIInternational audienceRecent progress in nanomaterials preparation, characterizat...
Introducing appropriate dual cocatalysts is one of the most efficient strategies to improve the phot...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
MICROSCOPIE+CDURABLE:CATREN:ING+TLN:PAF:LCS:NPR:MAO:FMO:LPINational audienceEnvironmental concerns i...
Summary: Here, we evaluate three different noble metal co-catalysts (Pd, Pt, and Au) that are presen...
Heterogeneous single-atom catalysts (SACs) with atomically dispersed active metal centers represent ...
Metal–support interactions are of significance in clarifying the support–activity relationship over ...
Compared to homogeneous catalysis, heterogeneous catalysis allows for ready separation of products f...
Here, we evaluate three different noble metal co-catalysts (Pd, Pt, and Au) that are present as sing...
International audienceCatalytic active sites consisting in isolated metal single atoms can be found ...
H2 activation is fundamental in catalysis. Single-atom catalysts (SACs) can be highly selective hydr...
Tuning CO2 hydrogenation selectivity to obtain targeted value-added chemicals and fuels has attracte...
Single atom catalysis (SAC) is a recent discipline of heterogeneous catalysis for which a single ato...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Supported single atoms constitute excellent models for understanding heterogenous catalysis and have...
SSCI-VIDE+ECI2D+LPIInternational audienceRecent progress in nanomaterials preparation, characterizat...