Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO towards hydrogen purification

Por um escritor misterioso
Last updated 22 dezembro 2024
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Developing single-site Pt catalysts for the preferential oxidation
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
A Facile Way To Improve Pt Atom Efficiency for CO Oxidation at Low
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Pt/N co-doped porous carbon derived from bio-tar: A remarkable
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Fully Exposed Metal Clusters: Fabrication and Application in
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Ordered Mesopore Confined Pt Nanoclusters Enable Unusual Self
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Full article: Advanced nanomaterials for highly efficient CO2
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Atomic metal–non-metal catalytic pair drives efficient hydrogen
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Lattice-confined Ru clusters with high CO tolerance and activity
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Hydrogen dissociation and spillover capacity a Surface H2–TPR
Fully-exposed Pt-Fe cluster for efficient preferential oxidation of CO  towards hydrogen purification
Scheme 2. Illustration of Diverse Atomic Configurations of Pt 13

© 2014-2024 immanuelipc.com. All rights reserved.