Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and light-enhanced catalysis due to their versatile plasmonic properties. However, tuning the plasmonic resonances is challenging as it requires a simultaneous control over the particle shape, shell thickness, and morphology. Here, we show that we have full control over these parameters by performing metal overgrowth on gold nanorods within a mesoporous silica shell, resulting in Au-Ag, Au-Pd, and Au-Pt core-shell nanorods with precisely tunable plasmonic properties. The metal shell thickness was regulated via the precursor concentration and reaction time in the metal overgrowth. Control over the shell morphology was achieved via a thermal annealing...
Abstract We present the synthesis and analysis of silicacoated Au Ag bimetallic nanorods with contr...
Gold nanorods (GNRs) support strong localized surface plasmon resonances that can be exploited to en...
Au nanorods are optically tunable anisotropic nanoparticles with built-in catalytic activities. The ...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Due to the larger surface area and the synergistic effects between two noble metals, the bimetallic ...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
We report an effective method to produce surface-enhanced Raman scattering (SERS) substrates with im...
Colloidal metal nanocrystals with strong, stable, and tunable localized surface plasmon resonances (...
Abstract We present the synthesis and analysis of silicacoated Au Ag bimetallic nanorods with contr...
Abstract We present the synthesis and analysis of silicacoated Au Ag bimetallic nanorods with contr...
Gold nanorods (GNRs) support strong localized surface plasmon resonances that can be exploited to en...
Au nanorods are optically tunable anisotropic nanoparticles with built-in catalytic activities. The ...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Bimetallic nanorods are important colloidal nanoparticles for optical applications, sensing, and lig...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
Due to the larger surface area and the synergistic effects between two noble metals, the bimetallic ...
Composite noble metal-based nanorods for which the surface plasmon resonances can be tuned by compos...
We report an effective method to produce surface-enhanced Raman scattering (SERS) substrates with im...
Colloidal metal nanocrystals with strong, stable, and tunable localized surface plasmon resonances (...
Abstract We present the synthesis and analysis of silicacoated Au Ag bimetallic nanorods with contr...
Abstract We present the synthesis and analysis of silicacoated Au Ag bimetallic nanorods with contr...
Gold nanorods (GNRs) support strong localized surface plasmon resonances that can be exploited to en...
Au nanorods are optically tunable anisotropic nanoparticles with built-in catalytic activities. The ...