A feasible way is developed to prepare Au core/Au-Ag alloy shell nanorods (Au@AuxAg1-x NRs) based on co-reduction of gold and silver ions under the guidance of Au NRs templates. Alloy nanorods with a wide composition range (x tunable from 0 to 1) are obtained. The Ag +/Au3+ ratios are found to affect the detailed morphology of the endcaps, which is responsible for the abnormal red-shift of localized surface plasmon resonance (SPR) mode. In consensus with theoretical prediction, dielectric sensitivity of the alloy NRs is mainly determined by the maximum of the LSPR band. Due to the change in electron structure, the alloy shells exhibit lower SERS activities than pure Ag shell. Copyright ? 2013 American Scientific Publishers All rights reserv...
International audienceBimetallic plasmonic nanoparticles enable tuning of the optical response and c...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
A feasible way is developed to prepare Au core/Au-Ag alloy shell nanorods (Au@AuxAg1-X, NRs) based o...
Colloidal metal nanocrystals with strong, stable, and tunable localized surface plasmon resonances (...
For many applications like surface enhanced Raman scattering or fluorescence microscopy in which the...
In this thesis, I describe the synthesis and processing of core/alloy nanoparticles (NPs) from the t...
Recent studies have conclusively shown that the plasmonic performance of Au nanostructures can be en...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Au@Cu<sub>2</sub>O core–shell nanostructures are fabricated to have a plasmon enhancement effect usi...
Au-Ag alloy nanostructures with various shapes were synthesized using a successive reduction method ...
Extensive research over the past few years have shown that strong electromagnetic enhancements can b...
Noble metal nanoparticles (NPs) such as silver (Ag) and gold (Au) have unique plasmonic properties t...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
We report the fine-tuning of the localized surface plasmon resonances (LSPRs) from ultraviolet to ne...
International audienceBimetallic plasmonic nanoparticles enable tuning of the optical response and c...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...
A feasible way is developed to prepare Au core/Au-Ag alloy shell nanorods (Au@AuxAg1-X, NRs) based o...
Colloidal metal nanocrystals with strong, stable, and tunable localized surface plasmon resonances (...
For many applications like surface enhanced Raman scattering or fluorescence microscopy in which the...
In this thesis, I describe the synthesis and processing of core/alloy nanoparticles (NPs) from the t...
Recent studies have conclusively shown that the plasmonic performance of Au nanostructures can be en...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Au@Cu<sub>2</sub>O core–shell nanostructures are fabricated to have a plasmon enhancement effect usi...
Au-Ag alloy nanostructures with various shapes were synthesized using a successive reduction method ...
Extensive research over the past few years have shown that strong electromagnetic enhancements can b...
Noble metal nanoparticles (NPs) such as silver (Ag) and gold (Au) have unique plasmonic properties t...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
We report the fine-tuning of the localized surface plasmon resonances (LSPRs) from ultraviolet to ne...
International audienceBimetallic plasmonic nanoparticles enable tuning of the optical response and c...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
Article publicat sota la llicència AuthorChoice de l'American Chemical Society: https://pubs.acs.org...