Tige en carbone vitreux, 3mm (0,1 in.) diamètre, type 1, Thermo Scientific Chemicals
Tige en carbone vitreux, 3mm (0,1 in.) diamètre, type 1, Thermo Scientific Chemicals
Tige en carbone vitreux, 3mm (0,1 in.) diamètre, type 1, Thermo Scientific Chemicals
Thermo Scientific Chemicals

Tige en carbone vitreux, 3mm (0,1 in.) diamètre, type 1, Thermo Scientific Chemicals

Utilisé comme matériau d’électrode en électrochimie. Il est également utilisé comme matériau d’électrode pour la fabrication de capteurs. C’est un matériau idéal pour la technologie du vide. Il est également utilisé dans le coulage, la fusion de métaux, les alliages durs et les creusets à haute température.
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Quantité:
50 mm
100 mm
200 mm
Référence 042822.DR
également connu sous le numéro 042822-DR
Prix (EUR)
709,00
Each
Quantité:
200 mm
Grand volume ou format personnalisé
Prix (EUR)
709,00
Each
Identifiants chimiques
CAS7440-44-0
IUPAC Namecarbon
Molecular FormulaC
InChI KeyOKTJSMMVPCPJKN-UHFFFAOYSA-N
SMILES[C]
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Appearance (Color)Black
FormRod, 3mm (0.1in) diameter (Glassy Carbon type-1, maximimum service temperature 1000?C).
Assay from Supplier's CofA>99.9%
Glassy carbon rod is used as an electrode material in electrochemistry. It is also employed as an electrode material for the fabrication of sensors. It serves as an ideal material for the vacuum technology. It is also used in casting, smelting of metal, hard alloys and high temperature crucibles.

This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Scientific Chemicals.

RUO – Research Use Only

Foire aux questions (FAQ)

What is the difference between type 1 glassy carbon and type 2 glassy carbon?

Type 1 is a "low temperature" glassy carbon produced by heat treatment at ~ 1,000-2,000°C and consists of discreet fragments of distorted graphene layers. In general, type 1 is less compressible, more resistant to oxidation, and less permeable to gasses. Type 2 is a"high temperature" glassy carbon produced by heat treatment at ~2,500-3,000°C and consists of broken or imperfect fullerene-like nanospheroids encased in a disordered, multilayered graphene matrix. Type 2 usually contains fewer impurities and has higher electrical and thermal conductivity.