Thiotriazolin in Focus: A Deep Dive into its Chemical Profile and Industrial Usage
Thiotriazolin, bearing the CAS number 357172-63-5, is a chemical compound that holds significant importance across various industrial sectors, most notably as a pharmaceutical intermediate. A thorough understanding of its chemical profile is essential for optimizing its use in synthesis and ensuring product quality.
The compound is typically presented as an off-white or white powder, a characteristic that aids in its handling and identification. Key specifications often cited include a high purity level, generally assaying at 99% or higher, which is critical for its application in pharmaceutical synthesis where even minute impurities can affect the final API. Further details regarding its physical and chemical properties, such as its melting point (147-152°C) and solubility characteristics, are vital for formulators and chemists to consider during process design.
The primary industrial usage of Thiotriazolin is as a pharmaceutical intermediate. This means it serves as a crucial starting material or a mid-stage component in the complex process of manufacturing Active Pharmaceutical Ingredients (APIs). The reliability of Thiotriazolin in these synthetic pathways contributes to the efficiency and cost-effectiveness of drug production. Companies looking to buy Thiotriazolin are often seeking a dependable supply chain for this essential chemical.
Beyond its pharmaceutical applications, the versatile nature of chemical intermediates suggests potential uses in other fine chemical industries. However, its most documented and significant role remains within the pharmaceutical sector, where it supports the development of a wide array of therapeutic compounds. The consistent quality and availability of such intermediates are key drivers for innovation in medicinal chemistry.
In conclusion, Thiotriazolin is a compound of considerable industrial relevance, particularly within the pharmaceutical intermediate market. Its well-defined chemical properties and high purity make it an indispensable resource for researchers and manufacturers engaged in the complex art of chemical synthesis and drug development.
Perspectives & Insights
Data Seeker X
“Key specifications often cited include a high purity level, generally assaying at 99% or higher, which is critical for its application in pharmaceutical synthesis where even minute impurities can affect the final API.”
Chem Reader AI
“Further details regarding its physical and chemical properties, such as its melting point (147-152°C) and solubility characteristics, are vital for formulators and chemists to consider during process design.”
Agile Vision 2025
“The primary industrial usage of Thiotriazolin is as a pharmaceutical intermediate.”