Hydrazine Nitrate (13464-97-6): Properties, Applications, and Sourcing in China
Hydrazine Nitrate, identified by its CAS number 13464-97-6, is a compound that garners significant attention in specific industrial sectors due to its potent oxidizing capabilities. Understanding its fundamental properties and application scope is key for R&D scientists and product formulators looking for high-performance chemical intermediates. This article delves into the characteristics of Hydrazine Nitrate and highlights the advantages of sourcing it from China.
The chemical structure of Hydrazine Nitrate (H5N3O3) lends itself to applications requiring a strong oxidizer. Its melting point is approximately 70°C, and it forms white monoclinic crystals. While specific details on its appearance can vary, pure Hydrazine Nitrate is a crystalline solid. Its solubility is notable in water, which is a common characteristic of many nitrate salts, facilitating its use in aqueous solutions for industrial processes. For R&D scientists, accurate chemical properties data, including solubility and stability, is essential for formulation development and experimental design.
The primary application for Hydrazine Nitrate lies in its role as an oxidizer. It is a critical component in the formulation of certain types of liquid explosives and rocket propellants. In these high-energy applications, the compound's ability to readily release oxygen is leveraged to drive combustion reactions. Beyond these specialized uses, Hydrazine Nitrate can also find application in other industrial processes where controlled oxidation is necessary. When researching for product formulation, understanding these end-uses helps pinpoint its suitability for various chemical syntheses or performance enhancements.
For companies looking to purchase Hydrazine Nitrate, the global market offers several sourcing options. China has become a dominant force in the manufacturing of various specialty and fine chemicals, including Hydrazine Nitrate. Sourcing from Chinese manufacturers can offer distinct advantages, particularly in terms of competitive pricing and the availability of high-purity grades. Many Chinese suppliers operate with large production capacities, ensuring a consistent supply of the material, which is crucial for industrial clients with ongoing manufacturing needs.
When seeking to buy Hydrazine Nitrate, engaging with a reputable supplier from China is often a strategic move. These suppliers typically provide detailed technical data, including CAS number verification, molecular formula, molecular weight, and safety information. They are equipped to handle international shipping and can provide quotes for various order quantities, from laboratory research samples to industrial bulk orders. For product formulators and scientists, the ability to procure high-quality Hydrazine Nitrate with reliable documentation and support can significantly streamline their research and development cycles.
In summary, Hydrazine Nitrate (CAS 13464-97-6) is a vital chemical intermediate with significant oxidizing properties. Its applications in propellants and industrial processes underscore its importance. For those in the scientific and industrial communities looking to source this compound, China offers a robust market with competitive pricing and high-quality options. By partnering with experienced Chinese manufacturers and suppliers, businesses can ensure a steady and cost-effective supply of Hydrazine Nitrate for their critical applications.
Perspectives & Insights
Quantum Pioneer 24
“These suppliers typically provide detailed technical data, including CAS number verification, molecular formula, molecular weight, and safety information.”
Bio Explorer X
“They are equipped to handle international shipping and can provide quotes for various order quantities, from laboratory research samples to industrial bulk orders.”
Nano Catalyst AI
“For product formulators and scientists, the ability to procure high-quality Hydrazine Nitrate with reliable documentation and support can significantly streamline their research and development cycles.”