1,3-Benzenedisulfonyl Chloride: A Key Reagent for Organic Synthesis
Organic synthesis is the cornerstone of many modern industries, from pharmaceuticals to advanced materials. The efficiency and success of these synthetic processes often hinge on the availability and quality of key chemical intermediates. 1,3-Benzenedisulfonyl Chloride (CAS 585-47-7) is a prime example of such a crucial reagent, enabling a wide array of chemical transformations.
Chemical Properties and Characteristics of 1,3-Benzenedisulfonyl Chloride
This compound, with the molecular formula C6H4Cl2O4S2 and a molecular weight of approximately 275.11 g/mol, is typically supplied as a light brown solid. Its defining feature is the presence of two highly reactive sulfonyl chloride (-SO2Cl) groups attached to a benzene ring at the 1 and 3 positions. These groups are excellent electrophiles, making the molecule ideal for reactions with nucleophiles. Understanding its moisture sensitivity is critical; exposure to water will lead to hydrolysis, forming the corresponding sulfonic acids. Therefore, maintaining dry conditions during storage and handling is imperative. For chemists looking to buy 1,3-benzenedisulfonyl chloride, appreciating these properties ensures optimal usage and longevity of the product.
Applications in Organic Synthesis
The primary utility of 1,3-Benzenedisulfonyl Chloride lies in its role as a versatile building block in organic synthesis. It can be used to synthesize sulfonamides, sulfonate esters, and other sulfur-containing organic compounds, which are prevalent in many biologically active molecules and functional materials. For instance, its reaction with amines yields sulfonamides, a class of compounds that includes many important drugs, such as antibiotics and diuretics. Its ability to introduce two sulfonyl groups into a molecule also allows for the creation of cross-linked structures or complex cyclic systems.
Researchers and manufacturers often seek to source CAS 585-47-7 to develop novel pharmaceuticals, agrochemicals, and specialty polymers. The precision and efficiency it brings to these synthetic pathways are highly valued. When undertaking complex multi-step syntheses, having a reliable source for such fundamental intermediates is paramount for achieving desired outcomes and maintaining project timelines.
The Importance of a Reliable Supplier
Choosing the right supplier for essential chemical intermediates like 1,3-Benzenedisulfonyl Chloride is a strategic decision for any chemical business. A dependable manufacturer in China, such as NINGBO INNO PHARMCHEM, offers significant advantages. They provide high-purity chemicals, stringent quality control, and competitive pricing, ensuring that customers can purchase 1,3-benzenedisulfonyl chloride with confidence. The availability of detailed product specifications and technical support further enhances the procurement experience. For businesses operating on tight margins or with demanding quality standards, a trusted supplier in China is invaluable.
By ensuring access to a consistent supply of high-quality benzene-1,3-disulfonyl dichloride, companies can optimize their synthetic routes and accelerate product development. NINGBO INNO PHARMCHEM's commitment to excellence makes them a go-to source for this vital chemical reagent.
In conclusion, 1,3-Benzenedisulfonyl Chloride is an indispensable tool for modern organic synthesis. Its reactive nature and diverse applications underscore its importance across various industries. By partnering with reliable suppliers like NINGBO INNO PHARMCHEM, businesses can secure the quality and quantity of this critical intermediate needed to drive innovation and achieve manufacturing excellence.
Perspectives & Insights
Molecule Vision 7
“It can be used to synthesize sulfonamides, sulfonate esters, and other sulfur-containing organic compounds, which are prevalent in many biologically active molecules and functional materials.”
Alpha Origin 24
“For instance, its reaction with amines yields sulfonamides, a class of compounds that includes many important drugs, such as antibiotics and diuretics.”
Future Analyst X
“Its ability to introduce two sulfonyl groups into a molecule also allows for the creation of cross-linked structures or complex cyclic systems.”