Overview of 250 nm Reactant Free Gold Nanoparticles
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Typical Properties
CAS | 7440-57-5 |
Catalog | ACCM7440575-36 |
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 | 250 nm |
Composition | Citrate stabilized gold colloid |
Particles Per ml | 7.08E+8 |
Formulation | Supplied in 0.1 mM phosphate buffered saline (PBS) |
Purity | >99% (reactant free) |
Particle Volume | 8.18E+06 nm3 |
Surface Area | 1.96E+05 nm2 |
Surface/Volume Ratio | 0.024 |
Particle Mass | 1.59E-13 g |
Molar Mass | 9.55E+10 g/mol |
Size You Can Choose
Size | 20 ml, 100 ml, 500 ml |
*If you have other needs, please feel free to contact us.
Overview of 250 nm Reactant Free Gold Nanoparticles
Description
Properties
Intended Use
Storage
The reactant free gold nanoparticles of 250 nm we offer are a type of nanoparticle suspension containing gold nanoparticles. Its main benefits are high purity and stability. Since no chemical reactants are used in the synthesis process, the resulting nanoparticles are free from any residual chemicals or impurities that could potentially affect their properties or applications. This high level of purity also contributes to the stability of the suspension, as there are fewer factors that could lead to aggregation or degradation of the nanoparticles over time.
Our 250 nm reactant free gold nanoparticle preparations have a tight size distribution (CV<8%), 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.
Our highly purified 250 nm reactant free gold nanoparticles are ideal for sensitive applications. For example, they are well suited for conjugate development by passive adsorption of proteins and other ligands to the gold nanoparticle surface. The resulting conjugate can be used in blotting, electron microscopy and immunohistochemistry applications.
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