Throughout the history of science, comparison among calculated parameters and experimental observables has been considered as obvious to accomplish and reciprocate a fundamental hypothesis. The exploitation of sharp edges toward a plethora of paraphernalia has been continued from the prehistoric evidence to modern nanotechnology. To validate the hypotheses of the sharp edges, gold nanostars that exhibit their localized surface plasmon resonances in the visible–near-infrared region and contain multiple sharp tips have been considered as the model structures. Efficient control on the length and sharpness of the spikes has been achieved by judicious manipulation of the respective synthetic protocol. The electromagnetic simulation considering t...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
old nanorods (AuNR) can be tailored to possess an intense and narrow longitudinal plasmon (LP) absor...
The development of new and improved photothermal contrast agents for the successful treatment of can...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Gold nanoparticles (GNPs) are widely used for biomedical applications due to unique optical properti...
The use of lasers, over the past few decades, has emerged to be highly promising for cancer therapy ...
The plasmonic photothermal properties of gold nanoparticles have been widely explored in the biomedi...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
The synthesis, characterization, and excited-state dynamics of colloidal gold–silver–gold core–shell...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
6 pags., 3 figs., 1 tab. -- OCIS codes: (240.6680) Surface plasmons; (250.5403) Plasmonics; (170.518...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
old nanorods (AuNR) can be tailored to possess an intense and narrow longitudinal plasmon (LP) absor...
The development of new and improved photothermal contrast agents for the successful treatment of can...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Gold nanoparticles (GNPs) are widely used for biomedical applications due to unique optical properti...
The use of lasers, over the past few decades, has emerged to be highly promising for cancer therapy ...
The plasmonic photothermal properties of gold nanoparticles have been widely explored in the biomedi...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
The synthesis, characterization, and excited-state dynamics of colloidal gold–silver–gold core–shell...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
6 pags., 3 figs., 1 tab. -- OCIS codes: (240.6680) Surface plasmons; (250.5403) Plasmonics; (170.518...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
old nanorods (AuNR) can be tailored to possess an intense and narrow longitudinal plasmon (LP) absor...