Nanoparticules d’or, 15 nm, fournies dans 0,1 mg/ml de citrate de sodium avec stabilisateur, dia. ext. 1, absorption à 520nm, Thermo Scientific Chemicals
Nanoparticules d’or, 15 nm, fournies dans 0,1 mg/ml de citrate de sodium avec stabilisateur, dia. ext. 1, absorption à 520nm, Thermo Scientific Chemicals
Nanoparticules d’or, 15 nm, fournies dans 0,1 mg/ml de citrate de sodium avec stabilisateur, dia. ext. 1, absorption à 520nm, Thermo Scientific Chemicals
Thermo Scientific Chemicals

Nanoparticules d’or, 15 nm, fournies dans 0,1 mg/ml de citrate de sodium avec stabilisateur, dia. ext. 1, absorption à 520nm, Thermo Scientific Chemicals

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RéférenceQuantité
J67307.AC
également connu sous le numéro J67307-AC
25 mL
Référence J67307.AC
également connu sous le numéro J67307-AC
Prix (EUR)
-
Quantité:
25 mL
Grand volume ou format personnalisé
Spécifications
CAS7440-57-5
ChEBICHEBI:30050
Nom chimique ou matériauGold nanoparticles
CouleurRose à rouge
Nom IUPACor
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Ce produit de la marque Thermo Scientific faisait à l’origine partie de la gamme de produits Alfa Aesar. Certains documents et informations sur l’étiquette peuvent faire référence à la marque héritée. Le code d’article / produit Alfa Aesar d’origine ou la référence SKU n’a pas changé dans le cadre de la transition de la marque vers Thermo Scientific.

  • À utiliser pour l’adsorption de ligands thiolatés tels que les oligonucléotides et les glycols en polyéthylène.
  • En outre, en raison de la stabilité accrue, ces nanoparticules d’or sont idéales pour être utilisées en applications physiques et optiques
RUO – Research Use Only

Foire aux questions (FAQ)

My Gold nanoparticles that are supplied in 0.1 mg/ml sodium citrate with stabilizer have turned a clear to bluish color. What causes this?

Irreversible aggregation is characterized by a clear to bluish solution upon the addition of salt. Since non-functionalized gold nanoparticles are sensitive to salt-containing buffers, re-suspension should always be performed in ultra-pure water to prevent irreversible aggregation.

How can I wash Gold nanoparticles, supplied in 0.1 mg/ml sodium citrate with stabilizer?

Although it is not generally necessary to wash the gold nanoparticles prior to use, some applications may require additional washing procedures. The easiest way to remove possible contaminants in the nanoparticles solution is by centrifugation. Centrifugation force is dependent on size of the gold nanoparticles. We recommend the following to wash gold nanoparticles:
1. Place 1 mL aliquot of colloidal gold in a 1.5 mL microcentrifuge tube.
2. Centrifuge the gold nanoparticles for 30 minutes using the recommended G force based on particle size (see below).
3. Remove the supernatant and re-suspend in an appropriate volume of ultra-pure water.
4. Vortex to re-disperse the particles.

Centrifugation speed guide for nanoparticle size:
size - G force
5 nm - 100,000 g
10 nm - 17,000 g
15 nm - 17,000 g
20 nm - 6,500 g
30 nm - 4,500 g
40 nm - 2,500 g
50 nm - 2,000 g
60 nm - 1,125 g
80 nm - 600 g
100 nm - 400 g

Do I need to wash Gold nanoparticles that are supplied in 0.1 mg/ml sodium citrate with stabilizer before use?

Although it is not generally necessary to wash the gold nanoparticles prior to use, some applications may require additional washing procedures. The easiest way to remove possible contaminants in the nanoparticles solution is by centrifugation. Centrifugation force is dependent on size of the gold nanoparticles. We recommend the following to wash gold nanoparticles:
1. Place 1 mL aliquot of colloidal gold in a 1.5 mL microcentrifuge tube.
2. Centrifuge the gold nanoparticles for 30 minutes using the recommended G force based on particle size (see below).
3. Remove the supernatant and re-suspend in an appropriate volume of ultra-pure water.
4. Vortex to re-disperse the particles.

Centrifugation speed guide for nanoparticle size:
size - G force
5 nm - 100,000 g
10 nm - 17,000 g
15 nm - 17,000 g
20 nm - 6,500 g
30 nm - 4,500 g
40 nm - 2,500 g
50 nm - 2,000 g
60 nm - 1,125 g
80 nm - 600 g
100 nm - 400 g

What are the recommended storage conditions for the Gold nanoparticles that are supplied in 0.1 mg/ml sodium citrate with stabilizer?

We recommend 4°C storage for our Gold nanoparticles that are supplied in 0.1 mg/ml sodium citrate with stabilizer. Do not freeze the particles because this causes irreversible aggregation. When stored for a long period of time, gold nanoparticles may sediment at the bottom of the flask, which is especially true for larger particle sizes. Prior to use, re-suspend the sedimented particles by swirling until a homogenous solution is obtained.