The Chemistry Behind CAS 338990-31-1: Synthesis and Applications
Delving into the chemical synthesis of Glycine, N-[(1,1-diMethylethoxy)carbonyl]-N-Methyl-, [2-[[(1-chloroethoxy)carbonyl]MethylaMino]-3-pyridinyl]Methyl ester (CAS 338990-31-1) reveals its intricate structure and its importance as a versatile building block. This compound, often encountered as a white powder, is central to many advanced organic synthesis projects, particularly within the pharmaceutical industry. Understanding its synthesis is key to appreciating its value.
The synthesis of this Glycine derivative typically involves multi-step organic reactions, combining specific functional groups to create the desired molecular architecture. As a manufacturer in China, we focus on optimizing these processes to ensure high purity and yield, making it an excellent API intermediate. Its molecular weight and specific chemical properties make it suitable for a range of applications, from drug discovery to the production of established pharmaceuticals. We are dedicated to providing efficient pharmaceutical intermediate synthesis.
One of the prominent applications for CAS 338990-31-1 is its role as an intermediate in the production of isavuconazonium sulfate, an important antifungal medication. Beyond this specific use, its structure lends itself to the development of various antitumor agents and other novel chemical compounds. Researchers and chemists rely on such precisely synthesized molecules to drive innovation. This highlights its significance in chemical synthesis.
For companies looking to procure this essential chemical compound, understanding its synthesis routes and application potential is crucial. As a trusted supplier in China, we offer detailed technical information and high-quality material to support your research and development efforts. Whether you are exploring new antitumor agents or refining existing pharmaceutical intermediate synthesis, this Glycine derivative is a valuable asset.
The synthesis of this Glycine derivative typically involves multi-step organic reactions, combining specific functional groups to create the desired molecular architecture. As a manufacturer in China, we focus on optimizing these processes to ensure high purity and yield, making it an excellent API intermediate. Its molecular weight and specific chemical properties make it suitable for a range of applications, from drug discovery to the production of established pharmaceuticals. We are dedicated to providing efficient pharmaceutical intermediate synthesis.
One of the prominent applications for CAS 338990-31-1 is its role as an intermediate in the production of isavuconazonium sulfate, an important antifungal medication. Beyond this specific use, its structure lends itself to the development of various antitumor agents and other novel chemical compounds. Researchers and chemists rely on such precisely synthesized molecules to drive innovation. This highlights its significance in chemical synthesis.
For companies looking to procure this essential chemical compound, understanding its synthesis routes and application potential is crucial. As a trusted supplier in China, we offer detailed technical information and high-quality material to support your research and development efforts. Whether you are exploring new antitumor agents or refining existing pharmaceutical intermediate synthesis, this Glycine derivative is a valuable asset.
Perspectives & Insights
Core Pioneer 24
“Its molecular weight and specific chemical properties make it suitable for a range of applications, from drug discovery to the production of established pharmaceuticals.”
Silicon Explorer X
“One of the prominent applications for CAS 338990-31-1 is its role as an intermediate in the production of isavuconazonium sulfate, an important antifungal medication.”
Quantum Catalyst AI
“Beyond this specific use, its structure lends itself to the development of various antitumor agents and other novel chemical compounds.”