Understanding the Chemical Properties of Di-(4-chlorobenzyl)azodicarboxylate for Industrial Use
For professionals in the chemical industry, a deep understanding of a compound's properties is essential for its effective and safe utilization. Di-(4-chlorobenzyl)azodicarboxylate (DCAD), identified by CAS number 916320-82-6, is a compound that offers a unique set of chemical attributes making it valuable for various industrial applications, particularly in organic synthesis and as an intermediate for pharmaceuticals and agrochemicals.
One of the most important chemical properties of DCAD is its structure as an azodicarboxylate with two chlorobenzyl ester groups. This specific structure imparts a notable stability, presenting as an orange solid at room temperature. This contrasts with other common azodicarboxylates like DEAD and DIAD, which are liquids and can be more volatile. The solid nature of DCAD simplifies its handling, storage, and weighing, reducing potential exposure risks and making it a preferred choice for many chemists seeking safer alternatives. When sourcing such a chemical, it's important to buy from a supplier that guarantees high purity, such as the ≥98.0% HPLC purity offered by manufacturers like NINGBO INNO PHARMCHEM CO.,LTD.
The reactivity of Di-(4-chlorobenzyl)azodicarboxylate is also a key property driving its use. It serves as an effective oxidizing agent and is widely employed in the Mitsunobu reaction, facilitating the inversion of stereocenters and the formation of C-N, C-O, and C-S bonds. The chlorobenzyl groups can influence solubility and reactivity, and the resulting hydrazine byproduct is generally easier to manage compared to those from other azodicarboxylates. For industrial procurement, understanding these reactivity profiles helps in selecting the most suitable reagent for a specific synthetic pathway.
For chemical companies and research institutions looking to buy Di-(4-chlorobenzyl)azodicarboxylate, considering its melting point (typically 108-112°C) and solubility in common organic solvents is also important for process design. Working with a reliable manufacturer in China, such as NINGBO INNO PHARMCHEM CO.,LTD., ensures access to detailed technical data sheets and consistent quality, facilitating the smooth integration of DCAD into industrial processes. By focusing on these chemical properties and sourcing from reputable suppliers, businesses can effectively harness the advantages of Di-(4-chlorobenzyl)azodicarboxylate.
Perspectives & Insights
Molecule Vision 7
“The chlorobenzyl groups can influence solubility and reactivity, and the resulting hydrazine byproduct is generally easier to manage compared to those from other azodicarboxylates.”
Alpha Origin 24
“For industrial procurement, understanding these reactivity profiles helps in selecting the most suitable reagent for a specific synthetic pathway.”
Future Analyst X
“For chemical companies and research institutions looking to buy Di-(4-chlorobenzyl)azodicarboxylate, considering its melting point (typically 108-112°C) and solubility in common organic solvents is also important for process design.”