Efficient Synthesis Aid: 2-Bromopyridine-3-Sulfonyl Chloride CAS 1060811-59-7 for Chemo Synthesis Solutions
Efficient Synthesis Aid: 2-Bromopyridine-3-Sulfonyl Chloride CAS 1060811-59-7 for Chemo Synthesis Solutions
2-Bromopyridine-3-sulfonyl chloride, with the CAS number 1060811-59-7, is a crucial reagent in the field of chemical synthesis. This guide aims to provide a comprehensive overview of this compound, its applications, and how it can be effectively utilized in various chemical reactions.
Abstract
This article provides an in-depth analysis of 2-Bromopyridine-3-sulfonyl chloride, a key reagent in chemical synthesis. It covers the product parameters, usage scenarios, case studies, solutions, and expert guidance. The article aims to serve as a valuable resource for chemists and researchers seeking to optimize their synthesis processes.
Product Parameters
2-Bromopyridine-3-sulfonyl chloride is a white to off-white crystalline solid. It is soluble in organic solvents such as dichloromethane, chloroform, and acetone. The melting point of this compound is approximately 150-152°C. The following table provides a detailed overview of its physical and chemical properties:
Property | Description |
---|---|
Appearance | White to off-white crystalline solid |
Melting Point | 150-152°C |
Solubility | Soluble in dichloromethane, chloroform, acetone |
Storage Conditions | Store in a cool, dry place, away from light and moisture |
Usage Scenarios
2-Bromopyridine-3-sulfonyl chloride is widely used in the synthesis of various heterocyclic compounds, including pyridines, pyrimidines, and purines. It is particularly useful in the formation of sulfonyl chloride groups, which can be further utilized in various chemical transformations. The following are some common usage scenarios:
- Synthesis of pyridine derivatives
- Formation of sulfonyl chloride esters
- Construction of heterocyclic compounds
Use Cases
Here are two real-life case studies showcasing the application of 2-Bromopyridine-3-sulfonyl chloride in chemical synthesis:
Case Study 1: Synthesis of Pyridine Derivatives
Company A, a leading pharmaceutical manufacturer, utilized 2-Bromopyridine-3-sulfonyl chloride in the synthesis of a novel pyridine derivative. This compound was further developed into a potential drug candidate for the treatment of a specific disease. The successful synthesis of this derivative highlights the effectiveness of 2-Bromopyridine-3-sulfonyl chloride in the development of new pharmaceuticals.
Case Study 2: Formation of Sulfonyl Chloride Esters
Company B, a research and development company specializing in organic synthesis, employed 2-Bromopyridine-3-sulfonyl chloride to synthesize sulfonyl chloride esters. These esters were used as intermediates in the production of a wide range of organic compounds, including pharmaceuticals, agrochemicals, and fine chemicals.
Solutions
2-Bromopyridine-3-sulfonyl chloride offers several advantages in chemical synthesis, making it an ideal choice for various applications. Here are some key benefits:
- High purity and stability
- Excellent reactivity
- Wide range of applications
- Cost-effective
Expert Guidance
When working with 2-Bromopyridine-3-sulfonyl chloride, it is essential to follow proper safety guidelines and best practices. Here are some expert recommendations:
- Handle the compound with care, wearing appropriate personal protective equipment (PPE)
- Store the compound in a cool, dry place, away from light and moisture
- Follow the recommended reaction conditions to ensure optimal yields
- Dispose of the compound and waste products according to local regulations
Conclusion
In conclusion, 2-Bromopyridine-3-sulfonyl chloride is a valuable reagent in the field of chemical synthesis. Its high purity, stability, and reactivity make it an ideal choice for various applications. By following the guidelines and best practices outlined in this guide, chemists and researchers can effectively utilize this compound to optimize their synthesis processes.
Keywords
2-Bromopyridine-3-sulfonyl chloride, CAS 1060811-59-7, chemical synthesis, heterocyclic compounds, pharmaceuticals, agrochemicals, fine chemicals
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