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Crotonaldehyde (4170-30-3) (C4H6O)
Crotonaldehyde (4170-30-3) (C4H6O)
Crotonaldehyde (4170-30-3) (C4H6O)
Crotonaldehyde (4170-30-3) (C4H6O)
Crotonaldehyde (4170-30-3) (C4H6O)
Crotonaldehyde (4170-30-3) (C4H6O)

Crotonaldehyde (4170-30-3) (C4H6O)

Price 700.0 INR/ Kilograms

MOQ : 25 Kilograms

Crotonaldehyde (4170-30-3) (C4H6O) Specification

  • Properties
  • Crotonaldehyde is a highly reactive unsaturated aldehyde used as a vital chemical intermediate. It is essential in the production of sorbic acid, fine chemicals, and pharmaceuticals. Due to its conjugated double bond and carbonyl group, it serves as a versatile building block for various heterocyclic synthesis processes.
  • Molecular Weight
  • 70.09 g/mol Grams (g)
  • Structural Formula
  • C4H6O
  • Purity
  • 98 99%
  • Usage
  • Intermediate for the synthesis of fragrance compounds, flavor enhancers, and polymeric materials; chemical intermediate for crotonaldehyde derivatives
  • Application
  • Industrial
  • Physical Form
  • Liquid
  • Solubility
  • Slightly soluble in water; soluble in organic solvents
  • Molecular Formula
  • C4H6O
  • Refractive Rate
  • 1.42
  • CAS No
  • 4170-30-3
  • Appearance
  • Colorless to pale yellow liquid
  • Melting Point
  • -60 C
 
 

About Crotonaldehyde (4170-30-3) (C4H6O)

We are Supplier, Exporter and Contract Manufacturer.
Technical profile of Crotonaldehyde, a high-purity raw chemical material supplied by Triveni Chemicals for industrial manufacturing and laboratory synthesis.

Technical Specifications:
CAS Number: 4170-30-3
Chemical Formula: C4H6O

Industrial Uses & Applications:
Crotonaldehyde Is A Colorless To Pale Yellow Liquid With A Strong, Pungent, Suffocating Odor. It Is An Important Intermediate Used In The Manufacture Of Sorbic Acid, Pharmaceuticals, Agrochemicals, Rubber Chemicals, And Specialty Resins. Crotonaldehyde Is An , Unsaturated Aldehyde, Making It Highly Reactive In Addition, Condensation, And Polymerization Reactions.



Versatile Chemical Intermediate

Crotonaldehyde's unique combination of a conjugated double bond and carbonyl group enables it to participate in numerous organic synthesis reactions. It is widely used as an intermediate for the production of sorbic acid, pharmaceutical products, and a diverse range of specialty chemicals.


Essential Role in Industrial Applications

This compound serves as a building block for the synthesis of heterocyclic compounds and polymers. Its reactivity allows for its incorporation into the manufacture of fragrance compounds, flavor enhancers, and crotonaldehyde derivatives that find use in multiple industries.


Physical and Chemical Properties

As a liquid at room temperature, crotonaldehyde appears colorless to pale yellow and has a melting point of -60C. It is slightly soluble in water and more readily dissolved in organic solvents, ensuring compatibility with numerous application processes and manufacturing needs.

FAQ's of Crotonaldehyde (4170-30-3) (C4H6O):


Q: How is crotonaldehyde commonly used in industrial processes?

A: Crotonaldehyde is primarily used as a chemical intermediate in the manufacture of sorbic acid, pharmaceuticals, flavor enhancers, fragrance compounds, and various specialty polymers.

Q: What are the main benefits of using crotonaldehyde as a chemical intermediate?

A: The main benefits include its high reactivity, which enables efficient synthesis of complex compounds, and its versatility as a starting material in heterocyclic and polymer chemistry.

Q: When should crotonaldehyde be considered for use in manufacturing?

A: Crotonaldehyde should be considered when a reactive, unsaturated aldehyde is needed as an intermediate for producing fine chemicals, food preservatives, or advanced material additives.

Q: Where is crotonaldehyde typically sourced or manufactured?

A: Crotonaldehyde is produced by chemical manufacturers and suppliers, with numerous facilities located across India specializing in its supply for industrial applications.

Q: What is the process for synthesizing crotonaldehyde derivatives?

A: Crotonaldehyde derivatives are typically synthesized via addition or condensation reactions facilitated by the aldehyde's conjugated double bond and carbonyl group, allowing for diverse chemical transformations.

Q: How does crotonaldehyde's physical form and solubility affect its usage?

A: Being a liquid and slightly soluble in water but highly soluble in organic solvents allows crotonaldehyde to be easily handled and incorporated into various organic synthesis processes.

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