N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution
N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution

N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution

N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution Specification

  • Moisture (%)
  • 60% (solvent water)
  • Molecular Weight
  • 241.39 g/mol
  • Boiling point
  • Decomposes before boiling
  • Heavy Metal (%)
  • <0.001%
  • Place of Origin
  • India
  • Ph Level
  • 12-14
  • HS Code
  • 29221990
  • EINECS No
  • Not assigned
  • Assay
  • >= 40% (w/w)
  • Residue on Ignition
  • <0.1%
  • Melting Point
  • Not applicable (liquid at room temperature)
  • Particle Size
  • Not applicable (liquid)
  • Storage
  • Store in cool, ventilated area. Keep container tightly closed.
  • Viscosity
  • 5-15 cP (approx., 25C)
  • Molecular Formula
  • C15H29NO
  • Other Names
  • N-Ethyl-N-(3,3,5-Trimethylcyclohexyl)pyrrolidinium hydroxide, ETMCP; Pyrrolidinium hydroxide compound
  • CAS No
  • 162816-27-7
  • Type
  • Aqueous Solution
  • Grade
  • Industrial grade
  • Usage
  • Organic synthesis intermediate, Phase transfer catalyst, Ionic liquid precursor
  • Purity
  • 40% (w/w) in water
  • Appearance
  • Clear liquid
  • Application
  • Used as a phase transfer catalyst, synthesis of ionic liquids, organic synthesis, specialty chemical manufacturing
  • Raw Material
  • 3,3,5-Trimethylcyclohexylamine, N-ethylpyrrolidine, aqueous base
  • Smell
  • Mild to none
  • Color
  • Colorless to slightly yellow
  • Form
  • Liquid
 

N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution Trade Information

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

About N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution

N-ethyl-N-(3,3,5-trimethyl cyclohexyl) pyrrolidinium hydroxide aq. solution, also known as ETPH, is a water-based solution that contains a quaternary ammonium salt. It is commonly used as a strong organic base in various chemical synthesis and industrial processes.

ETPH is a relatively new organic base that offers several advantages over traditional bases like sodium hydroxide or potassium hydroxide. It is more selective, less corrosive, and has a lower environmental impact than other bases. ETPH is particularly useful in the synthesis of complex organic molecules, such as pharmaceuticals and agrochemicals.

ETPH is also used as a solvent in various industrial processes, such as the production of pharmaceuticals and the extraction of natural products. It is a relatively safe and non-toxic solvent that can be used in a variety of applications.

FAQ

1. N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium hydroxide aqueous solution is what?

Ans - A chemical substance called N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium hydroxide aq. solution is employed as a reagent in the synthesis of organic compounds.

2. How might N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium hydroxide aqueous solution be used?

Ans - Several chemical processes, including oxidation, reduction, and hydrolysis, use N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium hydroxide aq. solution as a catalyst. Additionally, it is employed in the production of agrochemicals, medicines, and other specialised chemicals.

3. What are the storage requirements for N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium hydroxide aq. solution?

Ans - The aqueous solution of N-ethyl-n-(3 3 5-trimethyl cyclohexyl) pyrrolidinium should be kept in a cold, dry location away from light and heat. Additionally, it needs to be kept away from sturdy bases and combustible objects.



Key Features and Applications

This compound serves as a potent phase transfer catalyst, drastically advancing the efficiency of organic synthesis and specialty chemical manufacturing. It is also a valuable precursor for ionic liquids. Its high stability, miscibility with water, and industrial-grade purity ensure reliable performance across varied chemical processes.


Safe Handling and Storage Recommendations

To maintain its quality and stability, store the product in a cool, well-ventilated area with the container tightly closed. Avoid contact with strong oxidizers. Properly stored, N-ethyl-n-(3,3,5-trimethylcyclohexyl)pyrrolidinium hydroxide retains efficacy and safety throughout its 12-month shelf life.

FAQ's of N-ethyl-n-(3 3 5-trimethyl Cyclohexyl) Pyrrolidinium Hydroxide Aq. Solution:


Q: How is N-ethyl-n-(3,3,5-trimethylcyclohexyl)pyrrolidinium hydroxide used in organic synthesis?

A: This compound acts as a phase transfer catalyst and intermediate, facilitating reactions between organic and inorganic phases, thereby enhancing reaction rates and yields in organic synthesis.

Q: What are the recommended storage conditions for this product?

A: Store the solution in a cool, ventilated place, away from strong oxidizing agents, and keep the container tightly closed to maintain its quality and stability.

Q: When does the product expire and how should it be stored to maximize shelf life?

A: When stored properly in unopened packaging, this solution has a shelf life of 12 months from the date of manufacture. Avoid exposure to heat and light to ensure optimal longevity.

Q: Where is this product manufactured and what packaging options are available?

A: The product is manufactured in India and is supplied in industrial-grade HDPE drums or IBCs, with a minimum order quantity of 25 kg.

Q: What are the benefits of using this aqueous solution in chemical processes?

A: Its high purity, strong alkalinity, and miscibility in water make it exceptionally effective for phase transfer catalysis, enabling efficient and clean reactions for specialty chemical manufacturing.

Q: Is the compound safe to handle, and what precautions should be taken?

A: The product is stable under recommended storage conditions, but personal protective equipment should be worn when handling. Avoid contact with skin, eyes, and strong oxidizers to ensure safety.

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