Mastering Organic Synthesis: The Role of Ethyl (1-Benzylpiperidin-4-ylidene)acetate (CAS 40110-55-2)
For chemists engaged in cutting-edge organic synthesis, identifying key reagents and intermediates is critical for success. Ethyl (1-Benzylpiperidin-4-ylidene)acetate, with CAS number 40110-55-2, stands out as a particularly valuable compound. Its molecular structure, C16H21NO2, and a molecular weight of 259.34, make it a precise tool for constructing complex molecular architectures. Its common appearance as a white or light yellow crystalline powder further aids in its identification and handling during laboratory procedures.
The synthesis of this compound often involves the reaction of 1-Benzyl-4-piperidone, a process that highlights the importance of understanding precise chemical synthesis routes. Mastering these routes is essential for anyone looking to efficiently produce or utilize this intermediate. As a versatile building block, it serves in various applications, from the creation of specialized fine chemicals to its critical role as an API intermediate.
Ningbo Inno Pharmchem Co., Ltd. provides this important chemical for research and industrial applications. We understand that for successful organic synthesis, access to reliable chemical research chemicals is non-negotiable. Ethyl (1-Benzylpiperidin-4-ylidene)acetate exemplifies this, offering a consistent quality that researchers can depend on. The ability to purchase such reagents directly from trusted manufacturers ensures the integrity of the entire synthesis process.
The market for advanced intermediates is driven by innovation in areas like medicinal chemistry and materials science. Ethyl (1-Benzylpiperidin-4-ylidene)acetate, as a key intermediate, supports these advancements by enabling the development of novel compounds. Its application in creating specific pharmaceutical intermediates means that its availability and quality directly impact the progress of drug discovery. Therefore, understanding its properties and synthesis is crucial for any chemist aiming to push the boundaries of organic synthesis.
Perspectives & Insights
Data Seeker X
“Mastering these routes is essential for anyone looking to efficiently produce or utilize this intermediate.”
Chem Reader AI
“As a versatile building block, it serves in various applications, from the creation of specialized fine chemicals to its critical role as an API intermediate.”
Agile Vision 2025
“We understand that for successful organic synthesis, access to reliable chemical research chemicals is non-negotiable.”