Thermal growth kinetics of embedded bimetallic (AuAg/SiO$_2$) nanoparticles are explored and compared with their monometallic (Au/SiO$_2$ and Ag/SiO$_2$) counterparts, as their practical applicability demands stability and uniformity. The plasmonic properties of these nanoparticles (NPs) significantly improve when their size falls in the ultra-small region (diameter < 10 nm), owing to their large active surface area. Interestingly, the bimetallic NPs exhibit better optical properties and structural stability as compared to their monometallic counterparts. This calls for a thorough understanding of the nucleation and temperature-dependent growth to ensure size stability against thermal coarsening that most bimetallic NPs completely lack. Her...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Ultrasmall nanoparticles (NPs) with a high active surface areaare essential for optoelectronic and p...
The formation of alloyed Au–Ag bimetallic nanoparticles (NPs) by the solid-state thermal dewetting o...
Bimetallic Ag-Au nanoparticles are synthesized by sequential deposition of Au and Ag on amorphous si...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
In Chapter 1, a general introduction is given on the synthesis, morphologies, surface modifications,...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
We have studied the optical spectra in the UV and visible regions, the morphology by scanning electr...
International audienceBimetallic plasmonic nanoparticles enable tuning of the optical response and c...
Gold/silver (Au/Ag) bimetallic nanoclusters (shell) on silica (Au/Ag @ SiO 2) were synthesized by la...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Ultrasmall nanoparticles (NPs) with a high active surface areaare essential for optoelectronic and p...
The formation of alloyed Au–Ag bimetallic nanoparticles (NPs) by the solid-state thermal dewetting o...
Bimetallic Ag-Au nanoparticles are synthesized by sequential deposition of Au and Ag on amorphous si...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
In Chapter 1, a general introduction is given on the synthesis, morphologies, surface modifications,...
A general two-step approach has been developed for the synthesis of very small and sintering-resista...
We have studied the optical spectra in the UV and visible regions, the morphology by scanning electr...
International audienceBimetallic plasmonic nanoparticles enable tuning of the optical response and c...
Gold/silver (Au/Ag) bimetallic nanoclusters (shell) on silica (Au/Ag @ SiO 2) were synthesized by la...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...
Alloyed metal nanorods offer a unique combination of enhanced plasmonic and photothermal properties ...