Exploring Diethyl Fluoromalonate: Properties, Synthesis, and Applications
In the intricate world of organic chemistry, certain molecules serve as foundational building blocks, enabling the creation of a vast array of complex and valuable compounds. Diethyl Fluoromalonate (CAS 685-88-1) is one such compound, highly prized for its utility in pharmaceutical synthesis, agrochemical development, and material science. Understanding its properties, synthesis pathways, and applications is crucial for researchers and industry professionals seeking to leverage its potential. As a dedicated manufacturer and supplier of this essential chemical from China, we provide insights into why Diethyl Fluoromalonate is a vital component in modern chemical innovation.
Diethyl Fluoromalonate is characterized by its chemical formula C7H11FO4 and a molecular weight of approximately 178.16 g/mol. Physically, it typically presents as a clear, colorless to pale yellow liquid. Key properties include a boiling point of around 121-122 °C at 30 mm Hg, a density of approximately 1.129 g/cm³, and a refractive index of n20/D 1.407. These attributes contribute to its ease of handling and versatility in various reaction conditions. The presence of a fluorine atom on the central carbon of the malonate ester provides unique reactivity, making it an excellent substrate for a range of organic transformations.
The synthesis of Diethyl Fluoromalonate often involves specialized fluorination techniques. While detailed proprietary manufacturing processes vary, the goal is always to achieve high purity and minimize impurities. Manufacturers in China, including ourselves, have refined these processes to deliver product with purity levels of 99% or higher, which is critical for its sensitive applications. When procuring this chemical, it is advisable to consult with suppliers about their manufacturing standards and quality control measures to ensure you are buying a product that meets your exact needs.
The applications of Diethyl Fluoromalonate are extensive and impactful. In the pharmaceutical sector, it serves as a crucial intermediate for synthesizing fluorinated drugs. Fluorination can enhance a drug's metabolic stability, bioavailability, and target binding affinity, making Diethyl Fluoromalonate a valuable tool for medicinal chemists. Similarly, in the agrochemical industry, it is used to produce highly effective fungicides and pesticides that contribute to sustainable crop protection. The compound's utility also extends to material science, where it can be a precursor for specialty fluorinated polymers and advanced materials requiring enhanced thermal and chemical resistance.
For businesses looking to procure Diethyl Fluoromalonate, understanding the market and identifying reliable suppliers is key. China has become a significant hub for chemical manufacturing, offering competitive pricing and large-scale production capabilities. When searching for a supplier, keywords such as 'Diethyl Fluoromalonate manufacturer China,' 'buy CAS 685-88-1,' or 'Diethyl Fluoromalonate price' are commonly used. We pride ourselves on being a trusted partner, offering consistent quality, efficient logistics, and responsive customer service to meet the demands of researchers and manufacturers globally.
In summary, Diethyl Fluoromalonate is a cornerstone chemical intermediate with profound implications for various industries. Its unique properties, coupled with advancements in its manufacturing, make it an essential component for innovation. We encourage you to reach out to us for your Diethyl Fluoromalonate requirements, whether for pharmaceutical R&D, agrochemical development, or material science applications. Discover the advantage of sourcing from a quality-driven Chinese supplier committed to supporting your scientific and industrial endeavors.
Perspectives & Insights
Agile Reader One
“Key properties include a boiling point of around 121-122 °C at 30 mm Hg, a density of approximately 1.”
Logic Vision Labs
“These attributes contribute to its ease of handling and versatility in various reaction conditions.”
Molecule Origin 88
“The presence of a fluorine atom on the central carbon of the malonate ester provides unique reactivity, making it an excellent substrate for a range of organic transformations.”