The Science Behind 3-(1,4-Dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic Acid: Properties, Synthesis, and Applications
Understanding the intricate science behind specialized chemical intermediates is crucial for advancing research and manufacturing in the pharmaceutical sector. 3-(1,4-Dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic acid, identified by CAS number 226916-19-4, is a compound that merits close examination due to its significant role in modern drug synthesis. At NINGBO INNO PHARMCHEM CO.,LTD., we are deeply involved in the production and supply of such advanced chemical building blocks, ensuring high standards of quality and reliability. This article delves into the properties, synthesis applications, and overall importance of this specific intermediate.
The chemical identity of 3-(1,4-Dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic acid is defined by its molecular formula C11H14O4 and a molecular weight of 210.22600. Its structure features a unique spirocyclic system conjugated with a prop-2-enoic acid group, which imparts valuable reactivity and stability. Physically, it appears as a white to off-white powder, with specifications typically requiring an assay purity of 98.0% or higher. Its physical properties, such as a density of 1.25 g/cm³ and a high boiling point of 406.7ºC at 760 mmHg, indicate robustness suitable for various chemical processes. Furthermore, a flash point of 162.4ºC points to its relatively safe handling characteristics. As a manufacturer in China, we prioritize maintaining these quality parameters.
The primary application driving the demand for 3-(1,4-dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic acid is its critical function as an intermediate in the synthesis of Vorapaxar Sulfate. Vorapaxar Sulfate is a key pharmaceutical agent used in the prevention of thrombotic cardiovascular events, making the reliable supply of this intermediate essential for the healthcare industry. The compound's specific structure allows for the efficient construction of the complex molecular framework required for Vorapaxar Sulfate, demonstrating its value in targeted organic synthesis. For those looking to purchase this chemical, sourcing from a reputable supplier like NINGBO INNO PHARMCHEM CO.,LTD. guarantees quality and consistency.
The market for specialized chemical intermediates is continually expanding, driven by innovation in drug discovery and development. China, with its robust chemical manufacturing infrastructure, plays a pivotal role in supplying these essential materials globally. NINGBO INNO PHARMCHEM CO.,LTD. leverages this advantage to provide high-quality 3-(1,4-dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic acid, offering competitive pricing and flexible packaging solutions to meet diverse client needs. We are dedicated to being a trusted partner, ensuring that our intermediates contribute to the successful development of new and improved therapeutic agents. Our commitment extends to providing comprehensive support for your research and production requirements.
In conclusion, 3-(1,4-dioxaspiro[4.5]dec-7-en-7-yl)prop-2-enoic acid is more than just a chemical compound; it is a vital link in the chain of pharmaceutical innovation. Its unique properties and critical application underscore the importance of specialized intermediates in modern medicine. NINGBO INNO PHARMCHEM CO.,LTD. is proud to be at the forefront of supplying this essential building block, supporting scientific advancement and contributing to better health outcomes worldwide. We invite you to connect with us to explore how our products and expertise can benefit your projects.
Perspectives & Insights
Silicon Analyst 88
“5]dec-7-en-7-yl)prop-2-enoic acid is its critical function as an intermediate in the synthesis of Vorapaxar Sulfate.”
Quantum Seeker Pro
“Vorapaxar Sulfate is a key pharmaceutical agent used in the prevention of thrombotic cardiovascular events, making the reliable supply of this intermediate essential for the healthcare industry.”
Bio Reader 7
“The compound's specific structure allows for the efficient construction of the complex molecular framework required for Vorapaxar Sulfate, demonstrating its value in targeted organic synthesis.”