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Choline Bis(trifluoromethylsulfonyl)Imide

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  • Product Nr.: RN-I-IL-0110-HP
  • CAS Nr.: [827027-25-8]
  • Sum formula: C7H14F6N2O4S2
  • Molecular weight: 368.32
  • Melting point: 35-37 °C
  • Viscosity: 49.5 cP (45 °C)
  • Conductivity: 3.98 mS/cm (45 °C)Synonyms: Chol BTA, Chol NTf2, Chol TFSI, Chol BTI, N,N,N-thimethyl-N-(2-hydroxyethyl) ammonium bis(trifluoromethylsulfonyl)imide, 1,1,1-thimethyl-1-(2-hydroxyethyl) ammonium bis(trifluoromethylsulfonyl)imide

Product Overview

Choline bis(trifluoromethylsulfonyl)imide is an ionic liquid known for its excellent thermal stability, low volatility, and high solubility in a wide range of solvents. This versatile compound is suitable for numerous applications in chemical synthesis, electrochemistry, and material science, providing consistent and reliable performance.

Key factor

  • High Purity: Typically >98%, ensuring consistent quality and performance.
  • Thermal Stability: Maintains stability at high temperatures, suitable for various industrial processes.
  • Low Volatility: Minimal vapor pressure reduces evaporation loss, enhancing safety and efficiency.
  • Excellent Solubility: Soluble in a wide range of solvents, facilitating diverse applications.
  • Biocompatibility: Derived from choline, offering lower toxicity and better environmental compatibility.

Applications

  • Consistent Quality: High purity ensures reproducibility and reliability in experimental and industrial applications.
  • Enhanced Safety: Low volatility minimizes vapor-related hazards, improving handling safety.
  • Versatile Applications: Suitable for a wide range of applications due to its broad liquid range and excellent solubility properties.
  • Biocompatibility: Lower toxicity compared to other ionic liquids, making it suitable for applications in pharmaceuticals and biotechnology.
  • Efficient Performance: Enhances reaction rates and product yields in chemical synthesis and electrochemical processes.
  • Stable Properties: Maintains performance and integrity under various temperature and pressure conditions.

Advantages

  • Chemical Synthesis: Used as a solvent or catalyst in organic synthesis and polymerization reactions.
  • Electrochemistry: Employed in electrolytes for batteries, capacitors, and fuel cells due to its ionic conductivity.
  • Material Science: Applied in the preparation of advanced materials, including nanomaterials and composites.
  • Pharmaceuticals: Utilized in drug formulation and delivery systems, enhancing solubility and stability of active ingredients.
  • Biotechnology: Suitable for use in biocatalysis and other biochemical processes due to its biocompatibility.
  • Separation Processes: Used in extraction and separation technologies for purifying and isolating compounds.

Why HIYKA

Ensures reliable and reproducible results across applications. Low volatility reduces vapor hazards, making it safer to handle. Suitable for a broad range of industrial and research applications. Applicable in diverse fields such as chemical synthesis, electrochemistry, and material science. Lower toxicity and better environmental compatibility, ideal for pharmaceutical and biotechnological applications. Enhances reaction rates, product yields, and overall efficiency of processes.

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    Disclaimer

    The product image(s) shown is a reference for the actual product. While every effort has been made to maintain complete accuracy and up to date product information, it is important to go through details such as product labels, manufacturing details, batch, warnings, and directions before using a packaged product.

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    • We offer different prices for different pack sizes available.

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