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1-Hexanesulfonic Acid Sodium Salt Anhydrous, HPLC – 100 g (AFG Scientific)

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HPLC-grade ion-pairing reagent (≥99% purity). Used as a mobile phase additive in ion-pair chromatography. 100 g package.

  • ≥99% purity (HPLC-grade)
  • CAS No: 2832-45-3
  • Molecular Formula: C6H13O3SNa
  • Molecular Weight: 188.22 g/mol
  • White crystalline powder appearance
  • Storage required at 0–8°C

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1-Hexanesulfonic Acid Sodium Salt Anhydrous is a high-purity reagent utilized in ion-pair chromatography for HPLC applications. Specifically designed as a mobile phase additive in reversed-phase HPLC systems to enhance the separation of polar or ionic compounds on stationary phases. The ≥99% purity specification ensures low background signal and consistent results in HPLC analysis. Supplied as white crystalline powder, storage is recommended at 0–8°C. Sourced from AFG Scientific, this compound is suitable for method development, validation studies, and routine analysis in analytical laboratories and quality control departments employing ion-pair chromatography protocols.

Technical Specifications

Manufacturer AFG Scientific
CAS No 2832-45-3
Purity ≥99% (HPLC)
Molecular Formula C6H13O3SNa
Molecular Weight 188.22 g/mol
MDL No MFCD00007542
Appearance White crystalline powder
Storage Temperature 0–8 °C
Package Size 100 g

Applications

  • Ion-pair HPLC mobile phase preparation and optimization
  • Reversed-phase separation of polar and ionic compounds
  • Analytical method development and validation studies

Frequently Asked Questions

In which HPLC applications is this product used?
This reagent is added to the mobile phase in ion-pair chromatography to enhance the separation of polar or ionic compounds on reversed-phase columns, improving resolution and peak shape.
What are the proper storage conditions?
Store the product at 0–8°C in its original container, protected from moisture and light to maintain stability and performance.
Is the purity grade suitable for HPLC analysis?
Yes, the ≥99% HPLC-grade purity ensures minimal background noise and interference, making it ideal for sensitive quantitative and qualitative analyses.