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P-Anisidine
P-Anisidine

P-Anisidine

MOQ : 50 Kilograms

P-Anisidine Specification

  • Flash Point
  • 108C
  • CAS No
  • 104-94-9
  • Density
  • 1.09 Gram per cubic centimeter(g/cm3)
  • Melting Point
  • 57 - 59C
  • Purity
  • 99%
  • Shelf Life
  • 2 years
  • Physical State
  • Solid
  • Packaging Type
  • HDPE Drum, Glass Bottle, or Customized
  • Boiling point
  • 243C
  • Usage
  • Laboratory, Industrial
  • Size
  • Available in 25 kg, 50 kg
  • Storage Instructions
  • Store in a cool, dry place; Keep container tightly closed
  • Molecular Weight
  • 123.15 g/mol
  • Molecular Formula
  • C7H9NO
  • Grade
  • Reagent Grade
  • Type
  • Aromatic Amine
  • Application
  • Pharmaceutical Intermediates, Dye Intermediates, Organic Synthesis
  • Appearance
  • Light Brown to Brown Crystalline Powder
  • Purity(%)
  • 99%
  • Odor
  • Characteristic aromatic odor
  • Manufacturing Process
  • Synthesized via reduction of p-nitroanisole
  • Color
  • Light Brown
  • EC Number
  • 203-253-7
  • Molar Mass
  • 123.15 g/mol
  • Hazard class
  • Toxic, Harmful if inhaled or ingested
  • Refractive Index
  • 1.601 (20C)
  • HS Code
  • 29222990
  • Synonyms
  • 4-Methoxyaniline; p-Methoxyaniline; Anisidine-p; para-Anisidine
  • UN Number
  • 2811
  • Stability
  • Stable under recommended conditions
  • Solubility
  • Slightly soluble in water, easily soluble in alcohol and ether
 

P-Anisidine Trade Information

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

About P-Anisidine

P-Anisidine

  • Cas No: 104-94-9

  • Molecular Formula : C7H9NO

  • Molecular Weight : 123.15

  • Mp :     56-59 °C(lit.)

  • Bp : 240-243°C(lit.)

  • Density : 1.06

  • Refractive index : 1.5559

  • Fp : 122°C

  • storage temp. : 2-8°C

  • Form : crystalline

  • Color : dark gray to brown



Applications of P-Anisidine

P-Anisidine serves primarily as an essential intermediate for pharmaceuticals, dyes, and organic chemical synthesis. Its high purity makes it suitable for laboratory and industrial environments where precise reactions are required. Its controlled reactivity and solubility profile support a wide range of chemical manufacturing processes.


Safe Storage and Handling

As a toxic substance, P-Anisidine requires careful handling to ensure user safety. It should be stored in a cool, dry environment in tightly sealed containers. Use appropriate personal protective equipment to avoid inhalation or ingestion. The compounds shelf life extends up to two years under suitable storage conditions.


Manufacturing Process

P-Anisidine is typically synthesized via the reduction of p-nitroanisole. The process entails controlled chemical reactions under specific conditions to yield a high-purity product. Manufacturers in India commonly follow reagent-grade protocols to ensure quality and safety.

FAQs of P-Anisidine:


Q: How is P-Anisidine commonly used in industry?

A: P-Anisidine is widely utilized as an intermediate in the production of pharmaceuticals, dyes, and various organic compounds, owing to its high purity and reactivity.

Q: What safety precautions should be taken when handling P-Anisidine?

A: As a toxic substance, P-Anisidine should be handled in a well-ventilated area using gloves, protective clothing, and eye protection. Inhalation and ingestion must be avoided, and storage should be in tightly closed containers away from moisture.

Q: What is the typical storage method for P-Anisidine?

A: P-Anisidine should be stored in a cool, dry place, with the container kept tightly closed. Packaging is typically in HDPE drums or glass bottles to maintain stability and purity, and it should be protected from direct sunlight and incompatible substances.

Q: Where is P-Anisidine manufactured and distributed?

A: India is a prominent location for the manufacturing, distribution, export, import, and wholesale supply of P-Anisidine, facilitated by a network of reputable chemical suppliers and manufacturers.

Q: What is the main benefit of using P-Anisidine in organic synthesis?

A: The main advantage is its high purity and consistent reactivity, which make it a reliable intermediate for synthesizing complex organic molecules, ensuring reproducibility in laboratory and industrial processes.

Q: How is P-Anisidine produced industrially?

A: Industrial production of P-Anisidine typically involves the reduction of p-nitroanisole, following a controlled chemical process that ensures high product purity suitable for reagent-grade applications.

Q: What are the physical characteristics of P-Anisidine?

A: Physically, P-Anisidine appears as a light brown to brown crystalline powder with a characteristic aromatic odor, a melting point of 5759C, a boiling point of 243C, and a density of 1.09 g/cm.

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