Methyl Triethyl Ammonium Hydroxide Aq. Solution
Methyl Triethyl Ammonium Hydroxide Aq. Solution

Methyl Triethyl Ammonium Hydroxide Aq. Solution

Methyl Triethyl Ammonium Hydroxide Aq. Solution Specification

  • Density
  • 1.00 Gram per cubic centimeter(g/cm3)
  • Molecular Formula
  • C7H18NO
  • Melting Point
  • Not defined (decomposes before melting)
  • EINECS No
  • 245-020-6
  • Grade
  • Analytical/Laboratory/Nan
  • Solubility
  • Completely miscible in water
  • Properties
  • Strongly alkaline, corrosive, hygroscopic in nature, water soluble
  • Shape
  • Liquid
  • Purity
  • Usually 25-40% in aqueous solution
  • Ph Level
  • >13 (strongly alkaline)
  • Molecular Weight
  • 132.23 g/mol
  • Shelf Life
  • 12-24 months if properly stored
  • Application
  • Phase transfer catalyst, organic synthesis, laboratory reagent
  • Physical Form
  • Liquid (Aqueous Solution)
  • Storage
  • Store tightly closed in a cool, dry, well-ventilated place; away from acids
  • Poisonous
  • Yes, corrosive and harmful if ingested or inhaled
  • CAS No
  • 22340-01-0
  • HS Code
  • 29239000
  • Taste
  • Not applicable (corrosive chemical)
  • Structural Formula
  • [CH3N(C2H5)3]+ OH
  • Product Type
  • Quaternary Ammonium Compound
  • Usage
  • Used in organic synthesis, ion exchange, catalysis and as a phase transfer agent
  • Ingredients
  • Methyl Triethyl Ammonium Hydroxide, Water
  • Appearance
  • Clear to pale yellow liquid
  • Smell
  • Slight amine-like odor
  • Refractive Rate
  • 1.390-1.420
  • Compatibility
  • Incompatible with acids, oxidizing agents
  • Hazard Class
  • Corrosive (Class 8)
  • Decomposition Products
  • Emits toxic fumes under fire: nitrogen oxides, carbon oxides
  • Stability
  • Stable under recommended storage conditions
  • Environmental Hazard
  • Harmful to aquatic life
  • Transport Information
  • Transport as per local regulations; avoid contact with incompatible materials
  • Packing Group
  • II
  • Flash Point
  • Not applicable (aqueous solution)
  • Boiling Point
  • >100°C (decomposes)
  • Vapor Pressure
  • Similar to water at room temperature
  • UN No.
  • 2922
 

Methyl Triethyl Ammonium Hydroxide Aq. Solution Trade Information

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

About Methyl Triethyl Ammonium Hydroxide Aq. Solution

Methyl triethyl ammonium hydroxide aq. solution is used as a surfactant, emulsifier, and dispersant in various chemical and industrial processes. This is a type of quaternary ammonium compound with a chemical formula of C7H18NO, and a molecular weight of 130.23 g/mol. It is a clear, colourless to yellowish liquid that is highly soluble in water and has a strong odour. It is composed of the cation methyl triethylammonium and the anion hydroxide. It is a highly basic compound that is soluble in water and commonly used in chemical applications as a strong base and phase transfer catalyst.

FAQ

1. What is methyl triethyl ammonium hydroxide aq. solution, please explain?

Ans - Methyl triethyl ammonium hydroxide aq. solution is a colourless, transparent liquid that serves as a surfactant in a range of industrial and commercial processes. It has four nitrogen atoms in its structure because it is a quaternary ammonium molecule.

2. The second question is: What is the chemical name for methyl triethyl ammonium hydroxide aq. solution?

Ans - Methyl triethyl ammonium hydroxide aqueous solution has the chemical formula C6H15N(OH)3.

3. What are a few typical applications for methyl triethyl ammonium hydroxide aqueous solution?

Ans - Methyl triethyl ammonium hydroxide aq. solution is frequently utilised as a surfactant in detergents, emulsifiers, fabric softeners, and cleaning products. It also serves as a corrosion inhibitor and is utilised in the manufacturing of petrol and oil.

4. How hazardous is methyl triethyl ammonium hydroxide aqueous solution?

Ans - Although methyl triethyl ammonium hydroxide aqueous solution is typically thought to be non-toxic, it should nonetheless be handled and kept carefully to prevent any possible health concerns.

5. What is the best way to preserve methyl triethyl ammonium hydroxide aqueous solution?

Ans - Methyl triethyl ammonium hydroxide aq. solution should be kept away from sources of heat and moisture in a cold, dry environment. Additionally, it should be maintained away from any sources of ignition and bright sunlight. 



Versatile Applications in Synthesis and Catalysis

Methyl Triethyl Ammonium Hydroxide aqueous solution is extensively utilized in organic synthesis, functioning as a potent phase transfer catalyst. Its strong alkalinity and water solubility make it an ideal choice for laboratory-scale reactions and industrial manufacturing. Additionally, it plays a critical role in ion exchange processes and is valued in nanotechnology and analytical laboratories for its efficiency and specificity.


Safe Handling and Storage Guidelines

As a hazardous, corrosive substance (Class 8), this solution should be handled with appropriate personal protective equipment. Store it tightly sealed in a cool, dry, and well-ventilated location, distinctly away from acids and oxidizing agents. Prevent environmental exposure, as the compound can be harmful to aquatic life. Follow local regulations for transport, and ensure proper labeling and packaging to avoid accidental release or decomposition.

FAQ's of Methyl Triethyl Ammonium Hydroxide Aq. Solution:


Q: How should Methyl Triethyl Ammonium Hydroxide aqueous solution be safely handled and stored?

A: Always wear suitable protective clothing, gloves, and eye protection when handling this solution, as it is highly corrosive. Store it in tightly closed containers in a cool, dry, and well-ventilated area, away from acids, oxidizing agents, and incompatible materials. Avoid moisture ingress and prevent environmental contamination.

Q: What are the main applications of Methyl Triethyl Ammonium Hydroxide aqueous solution?

A: This chemical is primarily used as a phase transfer catalyst in organic synthesis, in ion exchange processes, and as a laboratory reagent. Its properties make it valuable for catalysis in advanced chemical manufacturing, analytical laboratories, and nanotechnology research.

Q: When can the solution decompose and what are its decomposition hazards?

A: Methyl Triethyl Ammonium Hydroxide aqueous solution decomposes at temperatures above 100C, releasing toxic fumes such as nitrogen oxides and carbon oxides. Always avoid heating, and keep it away from fire and incompatible chemicals to minimize the risk of hazardous decomposition.

Q: Where should you avoid using or storing this chemical?

A: Never store or use this solution near acids, oxidizing agents, or in areas with high moisture. It should be kept away from drains and water sources since it poses harm to aquatic life. Appropriate containment and location are necessary to prevent accidental environmental releases.

Q: What is the process for transporting this substance safely?

A: Transport Methyl Triethyl Ammonium Hydroxide aqueous solution in labeled, corrosion-resistant, sealed containers as per local and international regulations for Hazard Class 8 substances (UN No. 2922, Packing Group II). Always avoid contact with incompatible materials during transit and ensure safety data sheets accompany shipments.

Q: How is this solution typically used in laboratory and industrial settings?

A: It is directly added to reaction mixtures as a catalyst, phase transfer reagent, or for ion exchange. Accurate dosing, proper dilution, and careful mixing are essential to achieve desired reaction outcomes. Its clear to pale yellow appearance allows users to easily monitor its addition during processes.

Q: What are the benefits of using Methyl Triethyl Ammonium Hydroxide in synthesis applications?

A: Its strong alkalinity and high solubility enable efficient reaction processes, particularly when a phase transfer catalyst is required. This enhances yield and selectivity in organic transformations, while also allowing reactions to proceed under milder conditions than with conventional bases.

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