Sodium tetrathionate dihydrate

99%

  • Product Code: 57853
  Alias:    Sodium tetrasulfonate, dihydrate
  CAS:    13721-29-4
Molecular Weight: 306.27 g./mol Molecular Formula: NaO₃SS₂SO₃Na₂H₂O
EC Number: MDL Number: MFCD00150868
Melting Point: Boiling Point:
Density: 2.1 g/mL at 25 °C(lit.) Storage Condition: 2~8°C
Product Description: Sodium tetrathionate dihydrate is primarily used in biochemical research, particularly in the study of enzymatic reactions and redox processes. It serves as a substrate or reagent in assays to investigate the activity of enzymes like thiosulfate sulfurtransferase, which plays a role in sulfur metabolism. Additionally, it is employed in the preparation of buffer solutions for specific experimental conditions, aiding in maintaining stability during biochemical analyses. In analytical chemistry, it is utilized as a standard or reference compound in titrations and other quantitative methods to determine the concentration of other substances. Its role in these applications highlights its importance in advancing scientific understanding of metabolic pathways and chemical interactions.
Product Specification:
Test Specification
ASSAY 99 100%
X-RAY DIFFRACTION Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
10.000 10-20 days £142.26
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50.000 10-20 days £519.74
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Sodium tetrathionate dihydrate
Sodium tetrathionate dihydrate is primarily used in biochemical research, particularly in the study of enzymatic reactions and redox processes. It serves as a substrate or reagent in assays to investigate the activity of enzymes like thiosulfate sulfurtransferase, which plays a role in sulfur metabolism. Additionally, it is employed in the preparation of buffer solutions for specific experimental conditions, aiding in maintaining stability during biochemical analyses. In analytical chemistry, it is utilized as a standard or reference compound in titrations and other quantitative methods to determine the concentration of other substances. Its role in these applications highlights its importance in advancing scientific understanding of metabolic pathways and chemical interactions.
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