D-Glutamic acid, 4-fluoro-, (4R)-rel-


Chemical Name: D-Glutamic acid, 4-fluoro-, (4R)-rel-
CAS Number: 91383-47-0
Product Number: AG006BM4(AGN-PC-0VS7CR)
Synonyms:
MDL No:
Molecular Formula: C5H8FNO4
Molecular Weight: 165.1197

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DL-threo-4-fluoroglutamic acid, also known as 4-fluoroglutamic acid, is a crucial compound widely used in chemical synthesis processes. This versatile molecule serves as a key building block in the creation of various pharmaceuticals, agrochemicals, and other fine chemicals. Its unique structure and properties make it ideal for incorporating fluorine atoms into organic molecules, enhancing their biological activity and stability.In chemical synthesis, DL-threo-4-fluoroglutamic acid plays a vital role as a precursor for the production of fluorinated compounds with diverse applications. By utilizing this compound as a starting material, chemists can introduce the fluorine atom at specific positions within a molecule, leading to the development of new drugs, pesticides, and advanced materials. The presence of fluorine in organic molecules can significantly alter their physicochemical properties, such as lipophilicity, solubility, and metabolic stability, making them valuable in various industries.Furthermore, the incorporation of DL-threo-4-fluoroglutamic acid in chemical synthesis allows for the creation of fluorinated analogs of existing compounds, offering novel structures with improved properties and enhanced biological activities. This compound's role in medicinal chemistry, in particular, is significant, as fluorine substitution often leads to enhanced drug potency, selectivity, and pharmacokinetic profiles. By leveraging the synthetic versatility of DL-threo-4-fluoroglutamic acid, researchers can access a wide range of fluorinated products with diverse applications in the pharmaceutical and agricultural sectors.In summary, DL-threo-4-fluoroglutamic acid is a valuable tool in chemical synthesis, enabling the efficient incorporation of fluorine atoms into organic molecules for the development of innovative compounds with enhanced properties and biological activities. Its versatility and utility make it a key component in the creation of advanced materials and pharmaceuticals with improved performance and potential therapeutic benefits.