Sulfato de cobalto(II) heptahidrato, 98 %, Thermo Scientific Chemicals
Sulfato de cobalto(II) heptahidrato, 98 %, Thermo Scientific Chemicals
Sulfato de cobalto(II) heptahidrato, 98 %, Thermo Scientific Chemicals
Thermo Scientific Chemicals

Sulfato de cobalto(II) heptahidrato, 98 %, Thermo Scientific Chemicals

CAS: 10026-24-1 | CoH14O11S | 281.09 g/mol
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Cantidad:
100 g
500 g
2500 g
Número de catálogo A16201.0E
también denominado A16201-0E
Precio (EUR)
463,00
Each
Cantidad:
2500 g
Pedido a granel o personalizado
Precio (EUR)
463,00
Each
Identificadores químicos
CAS10026-24-1
IUPAC Nameλ²-cobalt(2+) heptahydrate sulfate
Molecular FormulaCoH14O11S
InChI KeyMEYVLGVRTYSQHI-UHFFFAOYSA-L
SMILESO.O.O.O.O.O.O.[Co++].[O-]S([O-])(=O)=O
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EspecificacionesSpecification SheetHoja de especificaciones
Elemental AnalysisCobalt (Co) : 20.12-21.49% (as heptahydrate)
Appearance (Color)Red to dark red or red-brown
FormCrystals or crystalline powder
Assay from Supplier's CofA≥97.5 to ≤102.5% (based on Cobalt EA)
Cobalt(II) sulfate heptahydrate is used in the preparation of pigments, as well as in the manufacture of other cobalt salts, which is used in porcelains and glass. It is used in storage batteries and electroplating baths, sympathetic inks, and as an additive to soils and animal feeds.

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.

Aplicaciones
El sulfato de cobalto(II) heptahidrato se utiliza en la preparación de pigmentos, así como en la fabricación de otras sales de cobalto, que se utilizan en porcelanas y vidrio. Se utiliza en baterías de almacenamiento y baños de galvanoplastia, tintas simpáticas, y como aditivo para suelos y piensos para animales.

Solubilidad
Soluble en agua.

Notas
Incompatible con agentes oxidantes fuertes.
RUO – Research Use Only

General References:

  1. Tang, C.; Wei, X.; Jiang, Y.; Wu, X.; Han, L.; Wang, K.; Chen, J. Cobalt-Doped MnO2 Hierarchical Yolk-Shell Spheres with Improved Supercapacitive Performance. J. Phys. Chem. C 2015, 119 (16), 8465-8471.
  2. Mayra, Q.; Kim, W. Agglomeration of Ni-Rich Hydroxide in Reaction Crystallization: Effect of Taylor Vortex Dimension and Intensity. Crys. Growth Des. 2015, 15 (4), 1726-1734.