Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomically dispersed metal atoms, hinting at much more pronounced metal–support effects. Herein, we take a series of polyoxometalate-supported Pt catalysts as examples to quantitatively investigate the stability of Pt atoms on oxide supports and how the Pt–support interaction influences the catalytic performance. For this entire series, we show that the Pt atoms prefer to stay at a 4-fold hollow site of one polyoxometalate molecule and that the least adsorption energy to obtain sintering-resistant Pt SACs is 5.50 eV, which exactly matches the cohesive energy of bulk Pt metal. Further, we compared their catalytic performance in several hydrogenation re...
International audiencePlatinum is the most versatile element in catalysis, but it is rare and its hi...
Understanding the effects of catalyst surface structure on a catalytic reaction is of fundamental im...
MICROSCOPIE+ECI2D:ING+DEC:TLN:FMO:JRO:MAO:PAF:LPINational audienceStimulated by the development of a...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
\u3cp\u3e Heterogeneous single-atom catalys...
Suppression of catalyst deactivation without compromising activity has been a long-standing yet elus...
MICROSCOPIE+CATREN:ING+TLN:PAF:FMO:JRO:MAO:LPIInternational audienceStimulated by recent advances in...
Single-atom metal catalysts offer a promising way to utilize precious noble metal elements more effe...
International audienceSupported platinum-based sub-nanometric particles play a central role in many ...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
In coordination chemistry, catalytically active metal complexes in a zero- or low-valent state often...
MICROSCOPIE+ECI2D:ING+FMO:JRO:MAO:PAF:LPIInternational audienceAtomically dispersed metals promise t...
Using density-functional theory, we predict stable alloy configurations (ground states) for a 1 nm P...
Doping isolated single atoms of a platinum-group metal into the surface of a noble-metal host is suf...
Embedding energetically stable single metal atoms in the surface of Pt nanocatalysts exposed to vari...
International audiencePlatinum is the most versatile element in catalysis, but it is rare and its hi...
Understanding the effects of catalyst surface structure on a catalytic reaction is of fundamental im...
MICROSCOPIE+ECI2D:ING+DEC:TLN:FMO:JRO:MAO:PAF:LPINational audienceStimulated by the development of a...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
\u3cp\u3e Heterogeneous single-atom catalys...
Suppression of catalyst deactivation without compromising activity has been a long-standing yet elus...
MICROSCOPIE+CATREN:ING+TLN:PAF:FMO:JRO:MAO:LPIInternational audienceStimulated by recent advances in...
Single-atom metal catalysts offer a promising way to utilize precious noble metal elements more effe...
International audienceSupported platinum-based sub-nanometric particles play a central role in many ...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
In coordination chemistry, catalytically active metal complexes in a zero- or low-valent state often...
MICROSCOPIE+ECI2D:ING+FMO:JRO:MAO:PAF:LPIInternational audienceAtomically dispersed metals promise t...
Using density-functional theory, we predict stable alloy configurations (ground states) for a 1 nm P...
Doping isolated single atoms of a platinum-group metal into the surface of a noble-metal host is suf...
Embedding energetically stable single metal atoms in the surface of Pt nanocatalysts exposed to vari...
International audiencePlatinum is the most versatile element in catalysis, but it is rare and its hi...
Understanding the effects of catalyst surface structure on a catalytic reaction is of fundamental im...
MICROSCOPIE+ECI2D:ING+DEC:TLN:FMO:JRO:MAO:PAF:LPINational audienceStimulated by the development of a...