Tetra Butyl Ammonium Hexaflurophosphate
Tetra Butyl Ammonium Hexaflurophosphate

Tetra Butyl Ammonium Hexaflurophosphate

Tetra Butyl Ammonium Hexaflurophosphate Specification

  • Boiling point
  • Not applicable (decomposes)
  • Residue on Ignition
  • 0.1%
  • Storage
  • Store in a tightly closed container, cool dry place
  • Place of Origin
  • India
  • Ph Level
  • Neutral aqueous solution
  • HS Code
  • 29239000
  • Loss on Drying
  • 0.5%
  • EINECS No
  • 221-395-0
  • Melting Point
  • 242-246 C
  • Molecular Weight
  • 387.42 g/mol
  • Heavy Metal (%)
  • <0.001%
  • Moisture (%)
  • <0.5%
  • Molecular Formula
  • C16H36F6NP
  • Assay
  • >=99%
  • Other Names
  • TBAHPF6, Tetra-n-Butylammonium Hexafluorophosphate
  • CAS No
  • 3109-63-5
  • Type
  • Quaternary Ammonium Salt
  • Grade
  • Analytical, Laboratory
  • Usage
  • Electrolyte, Phase transfer catalyst, Organic synthesis
  • Purity
  • 99.0%
  • Appearance
  • White to off-white crystalline powder
  • Application
  • Used as supporting electrolyte in electrochemistry, phase transfer catalyst
  • Raw Material
  • Quaternary ammonium base, Hexafluorophosphoric acid
  • Smell
  • Odorless
  • Color
  • White
  • Form
  • Solid
  • Solubility
  • Soluble in water, acetonitrile, methanol, ethanol, and DMF
  • Shelf Life
  • 2 years (unopened, stored properly)
  • Packaging Size
  • 25g, 100g, 500g, 1kg
  • Safety Precautions
  • Wear suitable protective clothing, avoid inhalation and contact with skin/eyes
  • EC Number
  • 221-395-0
  • Density
  • 1.287 g/cm³ (at 25°C)
  • Conductivity
  • Provides high ionic conductivity in non-aqueous solvents
  • Stability
  • Stable under recommended storage conditions
 

Tetra Butyl Ammonium Hexaflurophosphate Trade Information

  • Main Export Market(s)
  • Australia, Central America, South America, Western Europe, Middle East, Eastern Europe, Asia, North America, Africa
  • Main Domestic Market
  • All India
 

About Tetra Butyl Ammonium Hexaflurophosphate

Four butyl groups, a nitrogen atom, and a hexafluorophosphate anion make up the quaternary ammonium salt known as tetra butyl ammonium hexafluorophosphate (TBAHFP). TBAPF6 is a common abbreviation for it.

In many electrochemical applications, including lithium-ion batteries and electroplating, TBAHFP is frequently employed as an electrolyte. In organic synthesis, it can also be utilised as a phase transfer catalyst, enabling the transfer of a reactant from one phase (such as solid or liquid) to another.

TBAHFP can be utilised as a solvent and an emulsion stabiliser in addition to being employed in electrochemical and organic synthesis applications.

Although TBAHFP is typically regarded as a secure and reliable electrolyte and catalyst, it must be handled carefully because it can be dangerous if swallowed or inhaled in excessive amounts. When working with TBAHFP, proper ventilation, protective gear, and safe handling techniques should always be employed. Additionally, because it is hygroscopic and can collect water from the air, it should be handled and stored away from water and other sources of moisture. 



Versatile Applications in Modern Chemistry

Tetra Butyl Ammonium Hexafluorophosphate is widely recognized for its utility in laboratories and industries as a supporting electrolyte in electrochemical experiments and as a phase transfer catalyst. Its exceptional solubility in diverse solvents and high chemical stability make it indispensable for organic synthesis and research applications.


Reliable Stability and Purity

Offered at a purity of 99.0%, TBAHPF6 assures reliability and performance in analytical and laboratory procedures. With minimal moisture and heavy metal content, as well as compliance to stringent quality specifications, this compound maintains stability under recommended storage, ensuring lasting shelf life and consistent results.


Safe Storage and Handling

Store Tetra Butyl Ammonium Hexafluorophosphate in a cool, dry place with the container tightly closed. Adhere to safety guidelines by wearing protective clothing and avoiding inhalation or contact with skin and eyes. Proper storage safeguards the compound's integrity for its full two-year shelf life.

FAQ's of Tetra Butyl Ammonium Hexaflurophosphate:


Q: How should Tetra Butyl Ammonium Hexafluorophosphate be stored to maintain its stability?

A: To ensure optimal stability, keep TBAHPF6 in a tightly sealed container placed in a cool, dry location. Avoid exposure to moisture and extreme temperatures. Under these conditions, the product remains stable for up to two years.

Q: What are the main applications of Tetra Butyl Ammonium Hexafluorophosphate?

A: TBAHPF6 is primarily used as a supporting electrolyte in electrochemical experiments, a phase transfer catalyst in organic synthesis, and in demanding laboratory and analytical procedures thanks to its high purity and solubility.

Q: When is it beneficial to use Tetra Butyl Ammonium Hexafluorophosphate as an electrolyte?

A: TBAHPF6 is especially beneficial in non-aqueous electrochemical systems where high ionic conductivity and purity are required, supporting consistent and reproducible research results.

Q: How can TBAHPF6 be safely handled in a laboratory environment?

A: Wear suitable protective clothing, such as gloves and goggles, and work in a well-ventilated area. Prevent inhalation of dust and avoid direct contact with the skin or eyes during handling.

Q: Where is Tetra Butyl Ammonium Hexafluorophosphate manufactured and exported from?

A: This chemical is produced and exported from India, supplied by certified manufacturers and exporters adhering to analytical and laboratory grade standards.

Q: What solvents is Tetra Butyl Ammonium Hexafluorophosphate soluble in?

A: TBAHPF6 readily dissolves in water, acetonitrile, methanol, ethanol, and DMF, making it versatile for various laboratory and electrochemical applications.

Q: What are the benefits of using a high-purity compound like Tetra Butyl Ammonium Hexafluorophosphate in synthesis?

A: Utilizing 99.0% purity TBAHPF6 minimizes contaminants, leading to more reliable experimental results, improved yields, and effective performance in sensitive electrochemical and synthesis processes.

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