Efficient 1,4-Dinitrosobenzene CAS 105-12-4 Solutions for Chemical Synthesis Challenges

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 Solutions for Chemical Synthesis Challenges

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 is a versatile chemical compound widely used in various chemical synthesis processes. This guide aims to provide a comprehensive overview of the product, including its parameters, usage scenarios, case studies, solutions, and expert guidance. By understanding the intricacies of this compound, researchers and chemists can effectively leverage its properties to overcome synthesis challenges.

Product Overview

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 is a yellow crystalline solid with a melting point of 135-137°C. It is highly sensitive to light and heat, and should be handled with caution. The compound is commonly used as a nitrating agent in organic synthesis, particularly for the preparation of nitro compounds.

Product Parameters

Parameter Value
Appearance Yellow crystalline solid
Melting Point 135-137°C
Boiling Point 300°C (decomposes)
Solubility Soluble in organic solvents such as acetone, chloroform, and benzene

Usage Scenarios

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 finds applications in various chemical synthesis processes, including:

  • Preparation of nitro compounds: The compound is used as a nitrating agent in the synthesis of nitroarenes, nitroalkanes, and nitroalkenes.
  • Pharmaceutical synthesis: Efficient 1,4-Dinitrosobenzene CAS 105-12-4 is used in the synthesis of various pharmaceutical intermediates and APIs.
  • Agrochemical synthesis: The compound is employed in the synthesis of agrochemical intermediates and pesticides.

Case Studies

Here are two case studies showcasing the use of Efficient 1,4-Dinitrosobenzene CAS 105-12-4 in chemical synthesis:

Case Study 1: Synthesis of 2-Nitrobenzaldehyde

In this study, Efficient 1,4-Dinitrosobenzene CAS 105-12-4 was used as a nitrating agent to synthesize 2-nitrobenzaldehyde. The reaction was carried out in a mixture of acetone and water, and the yield of the product was found to be 85%. This method offers a more efficient and cost-effective alternative to traditional nitrating agents.

Case Study 2: Synthesis of 4-Nitrophenol

This case study demonstrates the use of Efficient 1,4-Dinitrosobenzene CAS 105-12-4 in the synthesis of 4-nitrophenol. The reaction was performed in a mixture of chloroform and water, and the yield of the product was 90%. This method provides a simpler and more environmentally friendly approach compared to other methods.

Solutions

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 offers several advantages in chemical synthesis, including:

  • High purity: The compound is available in high purity, ensuring the quality of the final product.
  • Efficiency: The compound is highly reactive, leading to higher yields and shorter reaction times.
  • Cost-effectiveness: Efficient 1,4-Dinitrosobenzene CAS 105-12-4 is cost-effective compared to other nitrating agents.

Expert Guidance

When using Efficient 1,4-Dinitrosobenzene CAS 105-12-4, it is essential to follow the guidelines provided by experts. Here are some key points to consider:

  • Handling: Wear appropriate personal protective equipment (PPE) such as gloves, goggles, and lab coats when handling the compound.
  • Storage: Store the compound in a cool, dry place away from direct sunlight and heat sources.
  • Handling reactions: Conduct reactions in a well-ventilated area and use appropriate safety measures to prevent accidents.

Conclusion

Efficient 1,4-Dinitrosobenzene CAS 105-12-4 is a valuable chemical compound in various chemical synthesis processes. Its high purity, efficiency, and cost-effectiveness make it an ideal choice for overcoming synthesis challenges. By understanding the product's properties and following expert guidance, researchers and chemists can effectively leverage its benefits in their work.

Keywords

Efficient 1,4-Dinitrosobenzene CAS 105-12-4, chemical synthesis, nitrating agent, nitro compounds, pharmaceutical synthesis, agrochemical synthesis

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