The heteroepitaxial growth of the core-shell nanocrystals composed of Pd and Au is developed. Pd nanocubes or Au nano-octahedrons are utilized as the cores. The growths of the Au and Pd shells are realized under similar conditions, where the same reducing agent and stabilizing surfactant are employed. The preparation is highly controllable, and the epitaxial growth is repeated up to three times to yield Pd@Au@Pd@Au and Au@Pd@Au@Pd core-trishell nanocrystals. The thickness of each shell is readily varied by changing the amount of the metal salts used for growth. All of the nanocrystal products have narrow size distributions and are single-crystalline. The plasmon resonance properties of these nanocrystals are mainly determined by the exterio...
We have synthesized Au@Ag core–shell nanocubes containing Au cores with varying shapes and sizes thr...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
The construction of functional noble metal nanocrystals has received increasing interest because the...
Au-Pd core-shell nanocubes and triangular nanoparticles were systematically synthesized from a few P...
The development of high-performance nanocatalysts relies essentially on the generation of stable and...
Pd−Au core‐shell nanoparticles with a palladium core (diameter about 5.5 nm) and a gold shell (thick...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
There has been much interest in colloidal noble metal nanoparticles due to their fascinating plasmon...
Pd nanocubes between 8 and 50 nm in size were synthesized at the same concentration of Na2PdCl4 prec...
Noble-metal nanostructures containing gold (Au) nanorods in the center were synthesized by employing...
Developing new strategies for tuning the plasmonic properties of palladium nanostructures is of both...
In this work, we report a facile synthesis route, structural characterization, and full atomistic si...
We have synthesized Au@Ag core–shell nanocubes containing Au cores with varying shapes and sizes thr...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
The construction of functional noble metal nanocrystals has received increasing interest because the...
Au-Pd core-shell nanocubes and triangular nanoparticles were systematically synthesized from a few P...
The development of high-performance nanocatalysts relies essentially on the generation of stable and...
Pd−Au core‐shell nanoparticles with a palladium core (diameter about 5.5 nm) and a gold shell (thick...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
There has been much interest in colloidal noble metal nanoparticles due to their fascinating plasmon...
Pd nanocubes between 8 and 50 nm in size were synthesized at the same concentration of Na2PdCl4 prec...
Noble-metal nanostructures containing gold (Au) nanorods in the center were synthesized by employing...
Developing new strategies for tuning the plasmonic properties of palladium nanostructures is of both...
In this work, we report a facile synthesis route, structural characterization, and full atomistic si...
We have synthesized Au@Ag core–shell nanocubes containing Au cores with varying shapes and sizes thr...
Colloids of gold and palladium nanoparticles have been prepared by the Solvated Metal Atom Dispersio...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...