Speciality Chemicals

N-Hexyl Pyridinium Tetrafluoroborate

  • CAS No.474368-70-2
  • GradeIndustrial / Pharmaceutical
  • Availability● In Stock

Premium grade ionic liquid reagent designed for electrochemical applications and organic synthesis with verified purity standards.

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Product Technical Details

Product Overview

N-Hexyl Pyridinium Tetrafluoroborate represents a class of advanced room temperature ionic liquids designed for specialized chemical environments. Composed of a hexyl-substituted pyridinium cation and a tetrafluoroborate anion, this compound exhibits unique physicochemical properties that distinguish it from conventional molecular solvents. The structural integrity of the pyridinium ring combined with the stability of the BF4 anion provides a wide liquid range and negligible vapor pressure. These characteristics make it an ideal candidate for green chemistry initiatives where solvent recovery and environmental safety are paramount concerns.

Our production methodology focuses on achieving high purity levels essential for sensitive electrochemical measurements. The synthesis involves precise alkylation followed by anion exchange, ensuring minimal residual halides that could interfere with downstream applications. This attention to detail results in a product that meets the stringent requirements of academic research institutions and industrial R and D departments alike.

Technical Specifications

ParameterSpecification
CAS Number474368-70-2
Molecular FormulaC11H18BF4N
Molecular Weight251.07 g/mol
Purity> 99%
Viscosity241 cp (20°C)
Density1.16 g/cm3
Halogen Content< 1000 ppm
Water Content< 1000 ppm
NMR AnalysisPassed

Key Features and Advantages

  • Enhanced Electrochemical Stability: The wide electrochemical window allows for operation at higher voltages without decomposition, crucial for energy storage devices.
  • Controlled Viscosity: With a viscosity of 241 cp at 20°C, it offers a balance between ionic mobility and handling ease, facilitating efficient ion transport.
  • Low Impurity Profile: Strict limits on water and halogen content prevent side reactions and corrosion in sensitive electronic components.
  • Thermal Robustness: The chemical structure withstands elevated temperatures, making it suitable for processes requiring thermal activation.
  • Versatile Solvent Properties: Capable of dissolving a wide range of organic and inorganic compounds, expanding its utility in synthesis.

Industrial Applications

In the energy sector, this ionic liquid is utilized as an electrolyte component in supercapacitors and next-generation batteries. Its non-flammable nature significantly reduces safety risks associated with traditional organic carbonate electrolytes. In pharmaceutical and fine chemical synthesis, it serves as a recyclable reaction medium for catalytic processes, including hydrogenation and coupling reactions. The ability to tune its properties makes it valuable in separation technologies, such as extracting specific compounds from complex mixtures without generating hazardous waste.

Furthermore, researchers utilize this material in sensor development and lubrication studies where conventional fluids fail. The compatibility with various electrode materials ensures reliable performance in electrochemical sensors and actuators.

Quality Assurance and Supply

Our company has been a pioneer in the research and development of ionic liquids for over ten years. Since 2007, we have supplied high-quality ionic liquid reagents to a global clientele, scaling from gram-level samples to hundred-ton industrial batches. Our extensive product portfolio includes Imidazolium, Pyrrolidinium, Phosphonium, and various functionalized ionic liquids. Each batch of N-Hexyl Pyridinium Tetrafluoroborate is subjected to rigorous quality control measures, including NMR spectroscopy and Karl Fischer titration. We provide comprehensive documentation such as Certificates of Analysis (COA) and Material Safety Data Sheets (MSDS) to ensure compliance with international standards. Our logistics network supports timely delivery worldwide, accommodating both urgent research needs and scheduled production runs.