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2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE
2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE

2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE

MOQ : 50 Kilograms

2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE Specification

  • Melting Point
  • Not applicable (liquid at room temperature)
  • Grade
  • Industrial Grade
  • Properties
  • Acyl chloride group; used as a versatile intermediate in organic synthesis
  • Shape
  • Molecular
  • Physical Form
  • Liquid
  • EINECS No
  • 240-563-4
  • Solubility
  • Hydrolyzes in water; soluble in most organic solvents
  • Appearance
  • Colorless to pale yellow liquid
  • Storage
  • Store tightly sealed in a cool, dry, and well-ventilated place away from moisture
  • HS Code
  • 29159090
  • Shelf Life
  • 12-24 months under recommended storage conditions
  • Purity
  • >98%
  • Application
  • Pharmaceutical intermediate, agrochemical synthesis, fine chemical production
  • Ingredients
  • 2-(4-Chlorophenyl)-3-methylbutyryl chloride
  • Smell
  • Pungent, irritating odor
  • Product Type
  • Organic Intermediate
  • Usage
  • Used for preparation of pharmaceutical and agrochemical compounds
  • CAS No
  • 16498-34-1
  • Poisonous
  • YES
  • Structural Formula
  • ClC(=O)CH(Me)CH_2C_6H_4Cl (para-Cl on phenyl)
  • Density
  • 1.16 Gram per cubic centimeter(g/cm3)
  • Molecular Weight
  • 194.67 g/mol
  • Refractive Rate
  • 1.522 (approx.)
  • Molecular Formula
  • C11H12ClO
 

2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE Trade Information

  • Minimum Order Quantity
  • 50 Kilograms
  • Supply Ability
  • 1 Kilograms Per Week
  • Delivery Time
  • 1 Week
 

About 2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE

2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE

CAS NO.: 51631-50-6

MOLECULAR FORMULA : C11H12OCl2

MOLECULAR WEIGHT : 231

APPEARANCE : LIGHT YELLOW COLOUR CLEAR LIQUID

SP. GRAVITY AT 20°C : 1.171

PURITY BY GC : 96% MIN


Applications and Usage

This compound acts as a key intermediate for synthesizing various pharmaceuticals and agrochemicals. Its acyl chloride group makes it indispensable in forming complex molecules required in active drug substances and crop protection agents. Its high purity enables reliable reactions and reproducible results, essential in industrial and laboratory processes alike.


Safe Handling and Storage

Due to its corrosive nature and instability with moisture, its crucial to prevent exposure and to use appropriate personal protective equipment. Store 2-(4-chlorophenyl)-3-methylbutyryl chloride in tightly sealed containers, kept in cool, dry, and ventilated spaces to maximize shelf life and retain chemical integrity. Routine monitoring and training are recommended for safe handling.

FAQs of 2-(4-CHLORO PHENYL )-3-METHYL BUTYRYL CHLORIDE:


Q: How should 2-(4-chlorophenyl)-3-methylbutyryl chloride be stored for optimal stability?

A: This compound should be kept tightly sealed in a cool, dry, and well-ventilated location, away from moisture, to prevent decomposition and ensure a shelf life of 1224 months.

Q: What is the main benefit of using this chemical in synthesis?

A: Its acyl chloride group makes it a highly effective intermediate for creating complex molecules in pharmaceutical, agrochemical, and fine chemical production, delivering consistent purity and reactivity.

Q: When must personal protective equipment be used with this compound?

A: Appropriate PPE, such as gloves, goggles, and lab coats, should be used at all times when handling this corrosive liquid to prevent burns and potential harm from inhalation, skin, or eye contact.

Q: Where is this chemical commonly used or supplied?

A: It is widely supplied to the pharmaceutical, agrochemical, and fine chemical sectors by distributors, exporters, and manufacturers throughout India and internationally.

Q: What precautions are necessary during transportation of this substance?

A: The compound is classified under UN 3265 as a corrosive organic liquid and should be shipped in secure HDPE drums or glass bottles with clear hazard labeling, in compliance with regulatory standards.

Q: How does its instability in water affect practical usage?

A: Because it hydrolyzes rapidly upon contact with moisture, reactions involving this compound must occur in dry environments, and exposure to water should be strictly avoided to ensure product integrity.

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