Publication | Closed Access
Modulating fcc and hcp Ruthenium on the Surface of Palladium–Copper Alloy through Tunable Lattice Mismatch
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Citations
25
References
2016
Year
EngineeringSolid-state ChemistryMetallic NanomaterialsChemistryNanostructure SynthesisTunable Lattice MismatchEpitaxial GrowthHcp RutheniumMaterials EngineeringMaterials ScienceFcc Ru OverlayerNanotechnologyNanocrystalline MaterialNanomaterialsPalladium–copper AlloySurface ScienceApplied PhysicsYolk–shell StructureSurface Reactivity
Abstract Herein, we report an epitaxial‐growth‐mediated method to grow face‐centered cubic (fcc) Ru, which is thermodynamically unfavorable in the bulk form, on the surface of Pd–Cu alloy. Induced by the galvanic replacement between Ru and Pd–Cu alloy, a shape transformation from a Pd–Cu@Ru core–shell to a yolk–shell structure was observed during the epitaxial growth. The successful coating of the unconventional crystallographic structure is critically dependent on the moderate lattice mismatch between the fcc Ru overlayer and PdCu 3 alloy substrate. Further, both fcc and hexagonal close packed (hcp) Ru can be selectively grown through varying the lattice spacing of the Pd–Cu substrate. The presented findings provide a new synthetic pathway to control the crystallographic structure of metal nanomaterials.
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