Seeding Bimetallic Nanostructures as a New Class of Plasmonic Colloids

Colloidal plasmonics is a rapidly developing field, with applications of metal nanoparticles that range from biosensing to photocatalysis. Historically, Au- or Ag-only nanoparticles have been investigated for these uses. However, there is emerging interest in multifunctional plasmonic colloids as we...

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Veröffentlicht in:The journal of physical chemistry letters 2013-09, Vol.4 (18), p.3072-3082
Hauptverfasser: DeSantis, Christopher J, Weiner, Rebecca G, Radmilovic, Andjela, Bower, Matthew M, Skrabalak, Sara E
Format: Artikel
Sprache:eng
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Zusammenfassung:Colloidal plasmonics is a rapidly developing field, with applications of metal nanoparticles that range from biosensing to photocatalysis. Historically, Au- or Ag-only nanoparticles have been investigated for these uses. However, there is emerging interest in multifunctional plasmonic colloids as well as a desire to expand the light scattering and absorption properties of Au or Ag nanoparticles. Both of these goals can be achieved by incorporating a second metal. In this Perspective, recent advances in the synthesis and application of Au–Ag and Au–Pd nanostructures are discussed. The highlighted nanostructures were synthesized through the seed-mediated method, an approach that provides for structurally complex nanoarchitectures while maintaining sample homogeneity. Overall, these architecturally controlled bimetallic nanostructures are representative of a new class of plasmonic colloids in which composition and structure can be manipulated to achieve unique optical properties and functionality.
ISSN:1948-7185
1948-7185
DOI:10.1021/jz4011866