The two structural modifications of Cu60Pd40 were synthesized as bulk powders and tested as unsupported model catalysts in the semi-hydrogenation of acetylene. The partly ordered low-temperature modification (CsCl type of structure) showed an outstanding ethylene selectivity of >90% over 20 h on stream while the disordered high-temperature modification (Cu type of structure) was 20% less selective, indicating an influence of the degree of order in the crystal structure on the catalytic properties. The results are supported by XRD and in situ XPS experiments. The latter suggest the existence of partly isolated Pd sites on the surface. In situ PGAA investigations proved the absence of metal hydride formation during reaction. Quantum chemical ...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under different conditio...
Palladium-based catalysts are known to promote the selective hydrogenation of acetylene to ethylene....
The two structural modifications of Cu60Pd40 were synthesized as bulk powders and tested as unsuppor...
The Pd and Pd-Cu on alumina catalysts were tested for hydrogenation of vinyl acetylene in mixed C4 i...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
Cu-alloyed Pd single-atom catalysts exhibit excellent catalytic performance for the semi-hydrogenati...
AbstractThe selective hydrogenation of acetylene to ethylene on several Pd surfaces (Pd(111), Pd(100...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Dedicated to Prof. Dr. Gerhard Ertl The structurally well-defined intermetallic compound PdGa – a hi...
The structurally well-defined intermetallic compound PdGa – a highly selective catalyst for the semi...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under various conditions...
Selective acetylene hydrogenation is an important method for removing traces of acetylene in the eth...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under different conditio...
The intermetallic compounds Pd3Ga7, PdGa, and Pd2Ga are found to be highly selective semihydrogenati...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under different conditio...
Palladium-based catalysts are known to promote the selective hydrogenation of acetylene to ethylene....
The two structural modifications of Cu60Pd40 were synthesized as bulk powders and tested as unsuppor...
The Pd and Pd-Cu on alumina catalysts were tested for hydrogenation of vinyl acetylene in mixed C4 i...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
Cu-alloyed Pd single-atom catalysts exhibit excellent catalytic performance for the semi-hydrogenati...
AbstractThe selective hydrogenation of acetylene to ethylene on several Pd surfaces (Pd(111), Pd(100...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Dedicated to Prof. Dr. Gerhard Ertl The structurally well-defined intermetallic compound PdGa – a hi...
The structurally well-defined intermetallic compound PdGa – a highly selective catalyst for the semi...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under various conditions...
Selective acetylene hydrogenation is an important method for removing traces of acetylene in the eth...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under different conditio...
The intermetallic compounds Pd3Ga7, PdGa, and Pd2Ga are found to be highly selective semihydrogenati...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
The hydrogenation of 1-pentyne over various palladium catalysts was studied under different conditio...
Palladium-based catalysts are known to promote the selective hydrogenation of acetylene to ethylene....