4 Aminobenzonitrile
4 Aminobenzonitrile

4 Aminobenzonitrile

4 Aminobenzonitrile Specification

  • Boiling point
  • 273C
  • Form
  • Powder
  • Smell
  • Mild aromatic
  • Shape
  • Crystalline solid
  • Molecular Weight
  • 118.14 g/mol
  • Purity
  • 99%
  • HS Code
  • 292690
  • Poisonous
  • No
  • Other Names
  • Para-Aminobenzonitrile; p-Aminobenzonitrile
  • Ph Level
  • Neutral
  • Melting Point
  • 82-85C
  • Structural Formula
  • C6H4(NH2)(CN)
  • Molecular Formula
  • C7H6N2
  • Solubility
  • Slightly soluble in water soluble in organic solvents
  • Storage
  • Store in a cool dry and well-ventilated area away from direct sunlight
  • Density
  • 1.18 Gram per cubic centimeter(g/cm3)
  • Classification
  • Organic Compound
  • Chemical Name
  • 4-Aminobenzonitrile
  • CAS No
  • 873-74-5
  • EINECS No
  • 212-836-5
  • Grade
  • Industrial
  • Standard
  • ISO 9001:2015
  • Type
  • Aromatic Amine
  • Usage
  • Intermediate in pharmaceuticals dyes and organic synthesis
  • Main Material
  • Benzonitrile derivative
  • Application
  • Used in the synthesis of pharmaceutical compounds and dyes
 
 

About 4 Aminobenzonitrile

Our organization is engaged in offering a distinct range of 4-Aminobenzonitrile to our trustable clients from Maharashtra, India. It is off-white or beige to orange-yellow crystalline with molecular formula C7H6N2. Our offered 4-Aminobenzonitrile is suitable for different applications and in various temperature conditions. Our product is checked completely upon a series of quality tests to look for our any possible defect from the product.

Features:

  • Melting Range : 87-90 deg C
  • Molecular Weight    118.14
  • Accurate composition
  • Precise pH value


Versatile Chemical Intermediate

4-Aminobenzonitrile serves as an essential intermediate for synthesizing pharmaceutical compounds and organic dyes. Its crystalline form and high purity ensure reliability in various chemical reactions, making it a favored choice in industrial applications across synthetic chemistry and materials science.


Quality and Safety Compliance

Manufactured to meet ISO 9001:2015 standards, our 4-Aminobenzonitrile is rigorously tested to guarantee consistent quality. The product is shipped as a powder and recommended for storage in cool, dry, well-ventilated environments away from direct sunlight, maintaining its integrity and performance.

FAQs of 4 Aminobenzonitrile:


Q: How should 4-Aminobenzonitrile be stored for optimal stability?

A: Store 4-Aminobenzonitrile in a cool, dry, and well-ventilated area, away from direct sunlight to ensure its stability and maintain its crystalline purity over time.

Q: What are the main applications of 4-Aminobenzonitrile in the industry?

A: 4-Aminobenzonitrile is primarily used as an intermediate in the synthesis of pharmaceuticals, organic dyes, and a broad range of organic compounds due to its reliable reactivity and high purity.

Q: What benefits does using ISO 9001:2015 grade 4-Aminobenzonitrile offer?

A: ISO 9001:2015 certification ensures stringent quality control, delivering consistent product performance, enhanced safety, and regulatory compliance for industrial processes.

Q: What is the recommended process for incorporating 4-Aminobenzonitrile in synthesis?

A: Its crystalline powder form allows easy handling and dissolves well in organic solvents, facilitating its use in high-precision chemical reactions typical in pharmaceutical and dye synthesis.

Q: Where is 4-Aminobenzonitrile produced and exported from?

A: It is manufactured and supplied by certified exporters and manufacturers in India, ensuring global availability for various industrial requirements.

Q: When is it preferable to use 4-Aminobenzonitrile in organic synthesis?

A: Utilize this compound when a high-purity aromatic amine is needed as a stable intermediate, especially in environments that demand reliable performance within pharmaceutical or dye manufacturing.

Q: What distinguishes para-Aminobenzonitrile from other benzonitrile derivatives?

A: Para-Aminobenzonitrile features an amino group at the para position on the benzene ring, contributing to its unique reactivity and functionality in chemical synthesis compared to other structural isomers.

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