The Role of Azodicarbonamide (CAS 123-77-3) in Modern Material Science
In the realm of material science and chemical manufacturing, specific compounds often become cornerstones for innovation and production efficiency. Azodicarbonamide, commonly known as AC or ADCA, with the CAS number 123-77-3, is undoubtedly one such compound. As a leading chemical auxiliary and catalyst supplier, we recognize the profound impact of this versatile blowing agent across numerous industries. Understanding its properties and applications is crucial for any R&D scientist or procurement manager looking to source high-quality materials.
Azodicarbonamide is scientifically defined by its chemical formula C2H4N4O2. Its physical form is typically an orange to pale yellow crystalline solid. The scientific community and industrial users alike value AC primarily for its controlled decomposition characteristics. When heated, it breaks down to release a substantial volume of gases, predominantly nitrogen (N2), carbon monoxide (CO), and carbon dioxide (CO2). This gas liberation is what enables the creation of cellular structures, or foams, within polymeric matrices.
The decomposition temperature of Azodicarbonamide is a key parameter that dictates its suitability for different polymer processing techniques. While the general decomposition range is around 201-205°C, manufacturers can modify particle size and distribution to slightly alter this. This tunability allows AC to be used in a wide spectrum of polymers, including PVC, PE, PP, EVA, and various rubbers like NBR and SBR. The consistent gas evolution and the generation of fine, uniform cells are hallmarks of its performance.
From an application perspective, the benefits of AC extend beyond simple foaming. Its self-extinguishing nature is a significant safety advantage, particularly in applications where fire resistance is a consideration. The decomposition byproducts are also noteworthy: they are odorless, non-toxic, and do not cause staining or discoloration of the polymer matrix. This purity of output makes Azodicarbonamide an ideal choice for manufacturing items like footwear, insulation materials, automotive components, and artificial leather where aesthetic appeal and safety are paramount.
For research scientists and product formulators, understanding how to source and integrate Azodicarbonamide effectively is vital. As a reliable Azodicarbonamide supplier, we provide comprehensive technical specifications, including average particle size, gas evolution volume, and decomposition temperature ranges. This information is critical for optimizing formulations and processing parameters. For those seeking to buy Azodicarbonamide, particularly for specific applications like PVC foaming, comparing different grades and ensuring compatibility is a standard practice.
As a forward-thinking Azodicarbonamide manufacturer, we are committed to advancing the applications of this essential chemical. We continually strive to offer competitive pricing and dependable supply chains, ensuring our clients can access this crucial material efficiently. Whether you are developing new materials or optimizing existing processes, our expertise in AC blowing agents is at your disposal. Explore the potential of Azodicarbonamide (CAS 123-77-3) and partner with us for your chemical sourcing needs.
Perspectives & Insights
Future Origin 2025
“Azodicarbonamide, commonly known as AC or ADCA, with the CAS number 123-77-3, is undoubtedly one such compound.”
Core Analyst 01
“As a leading chemical auxiliary and catalyst supplier, we recognize the profound impact of this versatile blowing agent across numerous industries.”
Silicon Seeker One
“Understanding its properties and applications is crucial for any R&D scientist or procurement manager looking to source high-quality materials.”