950 nm Resonant Silver Nanoplates
- Engineered to have extremely high optical efficiencies at 950 nm (peak resonance at 950 +/- 50 nm)
- Diameters between 110 - 150 nm
- 10 nm thick plates
- 0.02 mg/mL and 1.0 mg/mL concentrations
- PVP surfaces or 10 - 20 nm thick silica shell; PVA surface available upon request
- PVP & PVA capped particles provided in an aqueous 5 mM sodium borate buffer, silica shelled particles provided in an aqueous 10 mM sodium bicarbonate buffer
Ordering
Help me choose a concentration
(Note: These concentrations are not available for all products.)
0.02 mg/mL: 0.002 % by weight, these formulations are ideal for applications which require low concentrations and do not require significant dilution.
1 mg/mL: 0.1% by weight, these formulations are ideal for applications that require high concentrations such as nanotoxicology, environmental studies, diagnostics, and applications that require significant dilution.
5 mg/mL: 0.5% by weight, these formulations are ideal for applications that require extremely high concentrations such as nanotoxicology and environmental studies, as well as materials applications that require the nanomaterials to be incorporated into a custom solution or solvent.
Dried: Select formulations are available as a dried, easily redispersible powder. These formulations are ideal for applications which require the formulation to be resuspended in a custom solution/solvent or that require custom concentrations. Dried materials can be resuspended by mixing with solvent, followed by bath and/or probe sonication.
Help me choose a capping agent
(Note: These capping agents are not available for all products.)
Polyvinylpyrrolidone (PVP): PVP is a polymer that binds strongly to the nanoparticle surface and provides a high level of stability.
Polyvinyl alcohol (PVA): PVA is a polymer that binds strongly to the nanoparticle surface and provides a high level of stability.
PEG: Mercapto PEG (mPEG) is a biocompatible stabilizing ligand that strongly associates to the surface of the particle via its thiol (mercapto) end. PEGylated particles typically have low non-specific binding to cells and other biological entities.
Silica: Standard silica shells increase nanoparticle stability in a wide range of solvents and buffers, and also to changes in pH and temperature.
Amine-terminated Silica: Amine-terminated silica shells increase nanoparticle stability and provide a versatile surface for amine-reactive conjugation chemsitry.



