Understanding the Role of CAS 17739-45-6 in Pharmaceutical Synthesis
The development of new pharmaceuticals is a complex journey, heavily reliant on the availability of specialized chemical building blocks. Among these, intermediates like 2-(2-Bromoethoxy)tetrahydro-2H-pyran, identified by its CAS number 17739-45-6, play an indispensable role. This heterocyclic compound, with its unique bromoethoxy and tetrahydropyran functionalities, offers synthetic chemists a versatile tool for constructing intricate molecular architectures.
The utility of CAS 17739-45-6 lies in its reactive nature. The bromine atom serves as an excellent leaving group, making it ideal for nucleophilic substitution reactions. The tetrahydropyran ring provides a stable cyclic ether structure, which can influence solubility, stability, and interaction with biological targets. This combination of features makes it a sought-after component in the synthesis pathways of various drug candidates and Active Pharmaceutical Ingredients (APIs). Researchers looking to buy this compound often do so for its proven efficacy in specific reaction schemes.
As a key pharmaceutical intermediate, the demand for 2-(2-Bromoethoxy)tetrahydro-2H-pyran is driven by the ever-evolving pharmaceutical R&D landscape. Pharmaceutical companies and contract research organizations (CROs) require a consistent and reliable supply chain for such critical materials. Sourcing from manufacturers who guarantee high purity (e.g., 99% min) and maintain rigorous quality control standards is paramount. This ensures reproducibility in experiments and the integrity of the final drug product.
When considering the purchase of this intermediate, a thorough understanding of its specifications is beneficial. Its molecular formula, C7H13BrO2, and molecular weight, 209.08, are fundamental for stoichiometric calculations in synthesis. The physical form, typically a colorless liquid, and its handling requirements, such as storage conditions, are also important practical considerations for any laboratory or manufacturing facility.
For organizations seeking to procure 2-(2-Bromoethoxy)tetrahydro-2H-pyran, partnering with an experienced chemical supplier is key. A reputable supplier can offer not only competitive pricing but also technical support and logistical expertise, ensuring smooth transactions from initial inquiry to delivery. Many leading suppliers, particularly those based in China, offer competitive prices for bulk purchases and often provide product samples for quality assurance. This allows chemists to confidently integrate this intermediate into their synthetic strategies.
In summary, 2-(2-Bromoethoxy)tetrahydro-2H-pyran (CAS 17739-45-6) is a valuable and versatile pharmaceutical intermediate. Its unique chemical properties make it a cornerstone in the synthesis of numerous therapeutic compounds. Ensuring a reliable supply of high-purity material from trusted manufacturers and suppliers is crucial for the success of pharmaceutical research and development initiatives.
Perspectives & Insights
Quantum Pioneer 24
“The bromine atom serves as an excellent leaving group, making it ideal for nucleophilic substitution reactions.”
Bio Explorer X
“The tetrahydropyran ring provides a stable cyclic ether structure, which can influence solubility, stability, and interaction with biological targets.”
Nano Catalyst AI
“This combination of features makes it a sought-after component in the synthesis pathways of various drug candidates and Active Pharmaceutical Ingredients (APIs).”