Single-atom alloys, which are prepared by embedding isolated metal sites in host metals, are promising systems for improved catalyst selectivity. For technical applications, catalysts based on nanoparticles are preferred thanks to a large surface area. Herein, we investigate hydrogenation of acetylene to ethylene using kinetic Monte Carlo simulations based on density functional theory and compare the performance of Pd/Cu nanoparticles with Pd(111) and Pd/Cu(111). We find that embedding Pd in Cu systems strongly enhances the selectivity and that the reaction mechanism is fundamentally different for nanoparticles and extended surfaces. The reaction mechanism on nanoparticles is complex and involves elementary steps that proceed preferentially...
The catalytic properties of the single-Pd-doped Cu<sub>55</sub> nanoparticle toward propane dehydrog...
The selective hydrogenation of halogenated nitrobenzene (HNB) has been a great important chemical re...
Intermetallic compounds are a promising class of materials as stable and selective heterogeneous cat...
Single-atom alloys, which are prepared by embedding isolated metal sites in host metals, are promisi...
Single-atom alloys, which are prepared byembedding isolated metal sites in host metals, are promisin...
Supported Au-Pd nanoparticles are an excellent catalyst for the hydrogenation of alkynes, a crucial ...
Physical catalysts often have multiple sites where reactions can take place. One prominent example i...
The mechanisms of selective hydrogenation of acetylene to ethylene on B11N12Pd single-atom catalyst ...
Pd/C catalysts are widely used for hydrogenation reactions in the chemical industry. One of the reas...
AbstractThe selective hydrogenation of acetylene to ethylene on several Pd surfaces (Pd(111), Pd(100...
Bimetallic nanoparticles afford geometric variation and electron redistribution via strong metal-met...
Catalysis is a kinetics behavior, and developing the kinetics-assisted discrimination of the active ...
Recent experiments have shown that PdGa nanocrystallites act as highly selective and reactive cataly...
The mechanisms of selective hydrogenation of acetylene to ethylene on B11N12Pd single-atom catalyst ...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
The catalytic properties of the single-Pd-doped Cu<sub>55</sub> nanoparticle toward propane dehydrog...
The selective hydrogenation of halogenated nitrobenzene (HNB) has been a great important chemical re...
Intermetallic compounds are a promising class of materials as stable and selective heterogeneous cat...
Single-atom alloys, which are prepared by embedding isolated metal sites in host metals, are promisi...
Single-atom alloys, which are prepared byembedding isolated metal sites in host metals, are promisin...
Supported Au-Pd nanoparticles are an excellent catalyst for the hydrogenation of alkynes, a crucial ...
Physical catalysts often have multiple sites where reactions can take place. One prominent example i...
The mechanisms of selective hydrogenation of acetylene to ethylene on B11N12Pd single-atom catalyst ...
Pd/C catalysts are widely used for hydrogenation reactions in the chemical industry. One of the reas...
AbstractThe selective hydrogenation of acetylene to ethylene on several Pd surfaces (Pd(111), Pd(100...
Bimetallic nanoparticles afford geometric variation and electron redistribution via strong metal-met...
Catalysis is a kinetics behavior, and developing the kinetics-assisted discrimination of the active ...
Recent experiments have shown that PdGa nanocrystallites act as highly selective and reactive cataly...
The mechanisms of selective hydrogenation of acetylene to ethylene on B11N12Pd single-atom catalyst ...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
The catalytic properties of the single-Pd-doped Cu<sub>55</sub> nanoparticle toward propane dehydrog...
The selective hydrogenation of halogenated nitrobenzene (HNB) has been a great important chemical re...
Intermetallic compounds are a promising class of materials as stable and selective heterogeneous cat...