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http://dx.doi.org/10.5012/jkcs.2013.57.5.618

Controll over the Au@Ag Core-shell Nanoparticle 2D Patterns via Diblock Copolymer Inverse Micelle Templates and Investigation of the Surface Plasmon Based Optical Property  

Yoon, Min Ji (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Kim, Jihyeon (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Jang, Yoon Hee (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Lee, Ji-Eun (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Chung, Kyungwha (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Quan, Li Na (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Kim, Dong Ha (Department of Chemistry and Nano Science, Global Top 5 Research Program, Division of Molecular and Life Sciences, Ewha Womans University)
Publication Information
Abstract
We demonstrated unique inter- and intra-plasmonic coupling effects in bimetallic Au@Ag core-shell NP arrays which are regularly or randomly arranged on self-assembled block copolymer (BCP) inverse micelle monolayers. Polyvinylpyrrolidone (PVP)-stabilized Au@Ag core-shell NP arrays in regular or disordered configuration were incorporated and assembled on reconstructed PS-b-P4VP inverse micelle templates through two types of processes. The intensively enhanced LSPR coupling properties of individual and assembled Au@Ag NPs were evaluated by UV-visible spectroscopy in terms of the type of ligand stabilizer, coupling between Au and Ag, thickness of Ag shell, and type of array configuration. Finally, Au@Ag core-shell NP arrays were employed as active substrates for surface enhanced Raman spectroscopy (SERS) and a significantly enhanced signal enhancement was observed in accordance with the coupling intensity of Au@Ag NPs patterns.
Keywords
Au@Ag nanoparticle; Self-assembly; Block copolymer; Surface plasmon; Surface-enhanced Raman scattering;
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