Highly asymmetric Au nanostructures, such as split Au nanorings and Au nanocups, exhibit attractive plasmonic properties because of their asymmetric geometries. To facilitate their plasmonic applications, effective and facile synthetic methods for producing asymmetric Au nanostructures with controllable sizes and uniform shapes are highly desirable. Herein, we report on an approach for the synthesis of largely asymmetric colloidal Au nanobottles with synthetically tunable overall and opening sizes. Au nanobottles with overall sizes in the range of ∼100–230 nm are obtained through sacrificial templating with differently sized PbS nano-octahedra. The opening sizes of the produced Au nanobottles can be tailored from ∼10 to ∼120 nm by either ad...
Tuning the optical properties of Au nanostructures is of paramount importance for scientific interes...
Yamin Yang,1 Yue Hu,2 Henry Du,3 Lei Ren,4 Hongjun Wang5 1Department of Biomedical Engineering, Nan...
Gold nanoparticles (AuNPs) exhibit great potential for biological applications due to their good bio...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
The ability to synthesize plasmonic nanomaterials with well-defined structures and tailorable size i...
Gold nanostructures have garnered considerable attention in recent years for their potential to faci...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
Plasmon resonances of anisotropic multibranched nanostructures are governed by their geometry, allow...
Absorption-dominant small Au nanorods with diameters of less than 10 nm are prepared using a facile ...
International audienceThe illumination of gold nanoparticles (Au-NPs) sets off a cascade of complex ...
Noble metal nanoparticles, such as AuNPs, have attracted tremendous interest due to their optical pr...
The synthesis, characterization, and excited-state dynamics of colloidal gold–silver–gold core–shell...
The ability to synthesize plasmonic nanomaterials with well‐defined structures and tailorable size i...
The plasmonic photothermal properties of gold nanoparticles have been widely explored in the biomedi...
Tuning the optical properties of Au nanostructures is of paramount importance for scientific interes...
Yamin Yang,1 Yue Hu,2 Henry Du,3 Lei Ren,4 Hongjun Wang5 1Department of Biomedical Engineering, Nan...
Gold nanoparticles (AuNPs) exhibit great potential for biological applications due to their good bio...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
The ability to synthesize plasmonic nanomaterials with well-defined structures and tailorable size i...
Gold nanostructures have garnered considerable attention in recent years for their potential to faci...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
Plasmon resonances of anisotropic multibranched nanostructures are governed by their geometry, allow...
Absorption-dominant small Au nanorods with diameters of less than 10 nm are prepared using a facile ...
International audienceThe illumination of gold nanoparticles (Au-NPs) sets off a cascade of complex ...
Noble metal nanoparticles, such as AuNPs, have attracted tremendous interest due to their optical pr...
The synthesis, characterization, and excited-state dynamics of colloidal gold–silver–gold core–shell...
The ability to synthesize plasmonic nanomaterials with well‐defined structures and tailorable size i...
The plasmonic photothermal properties of gold nanoparticles have been widely explored in the biomedi...
Tuning the optical properties of Au nanostructures is of paramount importance for scientific interes...
Yamin Yang,1 Yue Hu,2 Henry Du,3 Lei Ren,4 Hongjun Wang5 1Department of Biomedical Engineering, Nan...
Gold nanoparticles (AuNPs) exhibit great potential for biological applications due to their good bio...