Revolutionize Your Synthesis with (4-Pyridylthio)acetic Acid – CAS 10351-19-6 Solutions

Product Overview

This comprehensive guide aims to revolutionize your synthesis process with the use of (4-Pyridylthio)acetic Acid - CAS 10351-19-6. By delving into the product parameters, usage scenarios, case studies, and expert guidance, we provide a detailed solution to enhance your synthesis efficiency and quality.

Product Abstract

This article offers a comprehensive guide to (4-Pyridylthio)acetic Acid - CAS 10351-19-6, a versatile reagent for organic synthesis. We explore its parameters, usage scenarios, case studies, and expert guidance to help you revolutionize your synthesis process. With this guide, you can optimize your reactions, improve yields, and achieve higher purity of products.

Product Parameters

(4-Pyridylthio)acetic Acid - CAS 10351-19-6 is a white to off-white crystalline solid with a melting point of 102-104°C. It is soluble in organic solvents such as chloroform, dichloromethane, and dimethylformamide. The molecular formula of this compound is C7H5NSO2, and its molecular weight is 181.21 g/mol.

Usage Scenarios

(4-Pyridylthio)acetic Acid - CAS 10351-19-6 is widely used in various organic synthesis reactions, including the following:

  • Thioester synthesis: This compound can be used as a thiolating agent to introduce a thioester group into organic molecules.
  • Thioether synthesis: It can be employed as a nucleophile in the formation of thioether bonds.
  • Thioketal synthesis: (4-Pyridylthio)acetic Acid - CAS 10351-19-6 can be used as a protecting group for aldehydes and ketones.

Case Studies

Here are two case studies showcasing the use of (4-Pyridylthio)acetic Acid - CAS 10351-19-6 in organic synthesis:

Company Application Result
ABC Chemicals Thioester synthesis High yield and purity of the thioester product
XYZ Pharmaceuticals Thioketal synthesis Improved reaction efficiency and higher purity of the product

Solution

By incorporating (4-Pyridylthio)acetic Acid - CAS 10351-19-6 into your synthesis process, you can achieve the following benefits:

  • Enhanced reaction efficiency: The compound can facilitate the formation of desired bonds, leading to faster reaction rates.
  • Improved yields: The use of (4-Pyridylthio)acetic Acid - CAS 10351-19-6 can help optimize reaction conditions, resulting in higher yields of the desired product.
  • Higher purity: The compound can be used as a protecting group, ensuring the purity of the final product.

Expert Guidance

When using (4-Pyridylthio)acetic Acid - CAS 10351-19-6, it is essential to follow the following guidelines:

  • Ensure proper handling and storage of the compound to maintain its stability.
  • Optimize reaction conditions, such as temperature, solvent, and catalyst, to achieve the desired results.
  • Monitor the reaction progress to ensure the formation of the desired product.

Conclusion

In conclusion, (4-Pyridylthio)acetic Acid - CAS 10351-19-6 is a valuable reagent for organic synthesis. By incorporating this compound into your synthesis process, you can enhance reaction efficiency, improve yields, and achieve higher purity of products. This guide provides a comprehensive overview of the product, its usage scenarios, case studies, and expert guidance to help you revolutionize your synthesis process.

Keywords

(4-Pyridylthio)acetic Acid, CAS 10351-19-6, organic synthesis, thioester synthesis, thioketal synthesis, protecting group, reaction efficiency, yields, purity

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