Understanding the effects of catalyst surface structure on a catalytic reaction is of fundamental importance in catalysis chemistry. Herein, a series of Pt-on-Au (Ptm^Au, m refers to the atomic Pt/Au ratio; Au size: 3.2 ± 0.4 nm) nanostructures with Pt dispersion in the range of 38% to 100% are used to study the structure sensitivity of the hydrogenation reactions of 1,3-butadiene and ethylene, respectively. The specific catalytic rates for both reactions are observed to increase with a decrease in the Pt dispersion or increasing m in Ptm^Au, demonstrating the structure-sensitive nature of both reactions over the Ptm^Au nanostructures. These observations strongly contrast with the structure insensitivity of the same reactions over our delib...
Since its first proposal by Horiuti and Polanyi, the mechanism of the catalytic hydrogenation of eth...
In this work, how the number and properties of specific sites on alumina surfaces affect the specifi...
The relation between the catalytic activity, electronic properties, morphology, and structure of the...
Platinum is a widely used precious metal in many catalytic nanostructures. Engineering the surface e...
We characterize the surface chemical states of reactants and catalysts under reaction conditions to ...
There exists an emerging opportunity, engendered by advances made in experimental methods of researc...
Hydrogenation of unsaturated hydrocarbon compounds, catalyzed by transition metals, is traditionally...
The product selectivity during 1,3-butadiene hydrogenation on monodisperse, colloidally synthesized,...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
Identification of active sites in heterogeneous metal catalysts is critical for understanding the re...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
The use of surface organometallic chemistry on metal (SOMC/M) allows the controlled and stepwise var...
Hydrogenation reactions are industrially important reactions that typically require unfavorably high...
Hydrogenation of 1,3-butadiene over supported Pt particles has long been known as a structure sensit...
We present the in situ synthesis of Pt nanoparticles within MIL-101-Cr (MIL = Materials Institute La...
Since its first proposal by Horiuti and Polanyi, the mechanism of the catalytic hydrogenation of eth...
In this work, how the number and properties of specific sites on alumina surfaces affect the specifi...
The relation between the catalytic activity, electronic properties, morphology, and structure of the...
Platinum is a widely used precious metal in many catalytic nanostructures. Engineering the surface e...
We characterize the surface chemical states of reactants and catalysts under reaction conditions to ...
There exists an emerging opportunity, engendered by advances made in experimental methods of researc...
Hydrogenation of unsaturated hydrocarbon compounds, catalyzed by transition metals, is traditionally...
The product selectivity during 1,3-butadiene hydrogenation on monodisperse, colloidally synthesized,...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
Identification of active sites in heterogeneous metal catalysts is critical for understanding the re...
Unlike nanostructured metal catalysts, supported single-atom catalysts (SACs) contain only atomicall...
The use of surface organometallic chemistry on metal (SOMC/M) allows the controlled and stepwise var...
Hydrogenation reactions are industrially important reactions that typically require unfavorably high...
Hydrogenation of 1,3-butadiene over supported Pt particles has long been known as a structure sensit...
We present the in situ synthesis of Pt nanoparticles within MIL-101-Cr (MIL = Materials Institute La...
Since its first proposal by Horiuti and Polanyi, the mechanism of the catalytic hydrogenation of eth...
In this work, how the number and properties of specific sites on alumina surfaces affect the specifi...
The relation between the catalytic activity, electronic properties, morphology, and structure of the...