Triethylamine hydrochloride CAS 554-68-7 Triethylamine hydrochloride CAS 554-68-7 Triethylamine hydrochloride CAS 554-68-7 Triethylamine hydrochloride CAS 554-68-7 Triethylamine hydrochloride CAS 554-68-7

Triethylamine hydrochloride CAS 554-68-7

5 USD ($)/Kilograms

Product Details:

  • HS Code 29211910
  • Molecular Formula C6H16ClN
  • Melting Point 261C
  • Molecular Weight 137.65 GSM (gm/2)
  • Density 1.07
  • CAS No 554-68-7
  • Product Type Synthesis Material Intermediates
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Triethylamine hydrochloride CAS 554-68-7 Price And Quantity

  • 5.00 - 20.00 USD ($)/Kilograms
  • 1000 Kilograms
  • 5 USD ($)/Kilograms

Triethylamine hydrochloride CAS 554-68-7 Product Specifications

  • Synthesis Material Intermediates
  • 554-68-7
  • 5 (10g/l, H2O, 20)
  • 1.07
  • White powder
  • 209-067-2
  • 261C
  • 137.65 GSM (gm/2)
  • C6H16ClN
  • 29211910

Triethylamine hydrochloride CAS 554-68-7 Trade Information

  • QingDao
  • 1000 Kilograms Per Month
  • 1 Months
  • Yes
  • Free samples are available
  • 25kg/Drum

Product Description

Triethylamine hydrochloride is an off-white solid with a melting point of 258261C. Easy to deliquesce, soluble in water and alcohol, slightly soluble in benzene, insoluble in ethers.

1.Used as basic raw materials for quaternary ammonium salts, medicines, pesticides, dyes and other organic synthesis

2.Manufacture of quaternary ammonium compounds. Organic Synthesis.

3.Triethylamine hydrochloride is mainly used in organic synthesis and the preparation of fourth amine compounds.




Versatile Chemical Intermediate

Triethylamine hydrochloride serves as a key intermediate in pharmaceuticals, agrochemicals, dyes, and fine chemical synthesis. Its stable crystalline nature and balanced pH make it suitable for precise laboratory and industrial processes. This compound is widely utilized for its efficiency in chemical reactions and formulation stability.


Reliable Quality & Supply

As a leading manufacturer and exporter from China, we ensure a consistent supply of high-quality triethylamine hydrochloride. Our strict quality controls guarantee a pure white appearance, accurate composition, and adherence to international standards, making it ideal for global distribution.

FAQ's of Triethylamine hydrochloride CASA A14A 554-68-7:


Q: How is triethylamine hydrochloride typically used in industrial processes?

A: Triethylamine hydrochloride is frequently employed as a chemical intermediate in the production of pharmaceuticals, agrochemicals, dyes, and other fine chemicals. Its stable crystalline form and controlled pH make it suitable for both laboratory synthesis and scale-up manufacturing operations.

Q: What benefits does triethylamine hydrochloride offer compared to other amine salts?

A: This compound offers advantages such as high purity, stable physical properties, and reliable performance in chemical synthesis. Its white powder form allows for easy handling and dissolving, and its defined melting point ensures consistency during processing.

Q: When should triethylamine hydrochloride be used in formulation processes?

A: Triethylamine hydrochloride is used when a controlled source of triethylamine is required, especially in reactions sensitive to free base forms. Its salt form helps reduce volatility and improve the accuracy of dosing in various chemical formulations.

Q: Where can triethylamine hydrochloride be sourced with assured quality?

A: We supply triethylamine hydrochloride directly from our Chinese manufacturing facilities, adhering to strict quality standards and international regulations. Our products are exported worldwide, ensuring reliable availability and competitive pricing.

Q: What is the typical process for handling and storing this product?

A: It should be kept in a tightly-sealed container in a cool, dry, and well-ventilated area. Using clean equipment and avoiding moisture helps maintain its white, powdery consistency. Appropriate PPE is recommended for safe handling.

Q: How does the molecular structure contribute to its usage in synthesis?

A: The molecular structure, with three ethyl groups attached to a nitrogen atom, provides both stability and reactivity. This enables it to effectively participate in alkylation, neutralization, and other chemical transformations during synthesis.

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