Mahmoud et al., 2010 - Google Patents
Gold nanoframes: very high surface plasmon fields and excellent near-infrared sensorsMahmoud et al., 2010
View PDF- Document ID
- 835129194031432366
- Author
- Mahmoud M
- El-Sayed M
- Publication year
- Publication venue
- Journal of the American Chemical Society
External Links
Snippet
The sensing efficiency or factor of noble metal nanoparticles is defined as the wavelength shift of the surface plasmon resonance extinction peak position per unit change in the refractive index of the surrounding medium. The sensitivity of different shapes and sizes of …
- 239000010931 gold 0 title abstract description 160
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Mahmoud et al. | Gold nanoframes: very high surface plasmon fields and excellent near-infrared sensors | |
Chow et al. | Gold nanobipyramids: An emerging and versatile type of plasmonic nanoparticles | |
Barbosa et al. | Tuning size and sensing properties in colloidal gold nanostars | |
Gschneidtner et al. | A versatile self-assembly strategy for the synthesis of shape-selected colloidal noble metal nanoparticle heterodimers | |
Mahmoud et al. | Different plasmon sensing behavior of silver and gold nanorods | |
DeSantis et al. | Size-controlled synthesis of Au/Pd octopods with high refractive index sensitivity | |
Xie et al. | The synthesis of SERS-active gold nanoflower tags for in vivo applications | |
Wiley et al. | Right bipyramids of silver: a new shape derived from single twinned seeds | |
Song et al. | SERS-encoded nanogapped plasmonic nanoparticles: growth of metallic nanoshell by templating redox-active polymer brushes | |
Lee et al. | Side-by-side assembly of gold nanorods reduces ensemble-averaged SERS intensity | |
Dai et al. | Bimetallic Au/Ag core–shell superstructures with tunable surface plasmon resonance in the near-infrared region and high performance surface-enhanced Raman scattering | |
Kim et al. | Preparation, characterization, and optical properties of gold, silver, and gold− silver alloy nanoshells having silica cores | |
Bai et al. | Controllable preparation of core–shell Au–Ag nanoshuttles with improved refractive index sensitivity and SERS activity | |
Theodorou et al. | Gold nanostar substrates for metal-enhanced fluorescence through the first and second near-infrared windows | |
Liu et al. | Synthesis of monodisperse Au, Ag, and Au–Ag alloy nanoparticles with tunable size and surface plasmon resonance frequency | |
Serrano-Montes et al. | A general method for solvent exchange of plasmonic nanoparticles and self-assembly into SERS-active monolayers | |
Liu et al. | Size-dependent surface enhanced Raman scattering activity of plasmonic nanorattles | |
Becker et al. | Plasmonic focusing reduces ensemble linewidth of silver-coated gold nanorods | |
Liang et al. | High-yield uniform synthesis and microstructure-determination of rice-shaped silver nanocrystals | |
Polavarapu et al. | Water-soluble conjugated polymer-induced self-assembly of gold nanoparticles and its application to SERS | |
Wang et al. | Controlled texturing modifies the surface topography and plasmonic properties of Au nanoshells | |
Yang et al. | Progress in multifunctional surface-enhanced Raman scattering substrate for detection | |
Jia et al. | Synthesis of highly branched gold nanodendrites with a narrow size distribution and tunable NIR and SERS using a multiamine surfactant | |
Nabika et al. | Toward plasmon-induced photoexcitation of molecules | |
Yoo et al. | Core− shell triangular bifrustums |