Overview of 80 nm Standard Gold Nanoparticles
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Typical Properties
CAS | 7440-57-5 |
Catalog | ACCM7440575-11 |
Molecular Weight | 196.97 g/mol |
Boiling Point | 2808 °C (lit.) |
Melting Point | 1063 °C (lit.) |
Flash Point | 4 °C |
Density | 19.3 g/mL at 25 °C (lit.) |
pH | 6-8 |
Diameter | 80 nm |
Composition | Citrate stabilized gold colloid |
Absorption Max | 555 nm |
Particles Per ml | 7.82E+9 |
Formulation | Supplied in 0.1 mM phosphate buffered saline (PBS) |
Peak SPR Wavelength | 553 nm |
Particle Volume | 2.68E+05 nm3 |
Surface Area | 2.01E+04 nm2 |
Surface/Volume Ratio | 0.075 |
Particle Mass | 5.20E-15 g |
Molar Mass | 3.13E+09 g/mol |
Size and Optical Density You Can Choose
Size | 20 ml, 100 ml, 500 ml, 1000 ml |
Optical Density | 1 OD, 10 OD |
*If you have other needs, please feel free to contact us.
Overview of 80 nm Standard Gold Nanoparticles
Description
Properties
Intended Use
Storage
The standard gold nanoparticles of 80 nm we offer are suspensions of tiny gold nanoparticles in a liquid medium. One of the most striking features of gold nanoparticles is their vibrant color, which is due to the phenomenon of surface plasmon resonance. This occurs when the electrons on the surface of the nanoparticles oscillate in response to incoming light, giving rise to intense and tunable colors depending on the size and shape of the nanoparticles. Among them, the 80 nm standard gold nanoparticles are orange-red. In addition, the unique properties of gold nanoparticles, such as their optical, electronic, and catalytic properties, make them extremely versatile materials with potential applications.
Our 80 nm standard gold nanoparticle preparations have a tight size distribution (CV<10%), excellent protein adsorption abilities and more than 95% spherical particles. And with low batch-to-batch variability (+/- 2nm), you can trust that you'll always receive a product within the specified size range. In addition, each of our batches undergoes rigorous quality control using dynamic light scattering to ensure size and monodispersity, and lot specifications are provided with every product shipment.
The conjugate is formed by passively adsorbing proteins and other ligands to the surface of gold nanoparticles. The resulting conjugate can be used for blotting, electron microscopy and immunohistochemistry applications.
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