The Versatility of (S)-2-(But-3-en-1-yl)oxirane in Chemical Synthesis
In the realm of organic chemistry, the development of novel molecules relies heavily on the availability of versatile and high-purity building blocks. (S)-2-(But-3-en-1-yl)oxirane, identified by CAS number 137688-21-2, stands out as a prime example of such a crucial intermediate. This chiral compound, with its distinct molecular formula C6H10O and molecular weight of 98.14, offers a unique combination of an epoxide ring and an allyl group, providing chemists with multiple avenues for synthetic manipulation. Its specific stereochemistry, denoted by the '(S)' configuration, is often essential for creating biologically active molecules.
The reactivity of the epoxide ring in (S)-2-(But-3-en-1-yl)oxirane allows for nucleophilic ring-opening reactions, leading to the formation of various functionalized alcohols. This is a cornerstone for constructing complex chiral centers within larger molecules. Simultaneously, the terminal alkene group can undergo a plethora of transformations, including additions, oxidations, and polymerization reactions. This dual functionality makes it a highly sought-after reagent for researchers aiming to synthesize intricate molecular architectures. When considering how to buy (S)-2-(But-3-en-1-yl)oxirane, prioritizing high purity (99% min) is paramount to ensure predictable and efficient reaction outcomes.
As a significant pharmaceutical intermediate, this oxirane derivative plays a vital role in the synthesis of numerous drug candidates and active pharmaceutical ingredients (APIs). Its incorporation into a synthetic route can introduce the required chirality, which is often critical for a drug's pharmacological activity and safety profile. For R&D scientists and procurement managers, sourcing this intermediate from a reputable manufacturer in China offers the advantage of cost-effectiveness coupled with high-quality production standards. The ability to obtain this chemical at a reasonable price without compromising purity is a key factor in accelerating drug development timelines.
The demand for stereochemically pure compounds like (S)-2-(But-3-en-1-yl)oxirane continues to grow as pharmaceutical companies focus on developing more targeted and effective therapies. Therefore, establishing a reliable partnership with a chemical supplier that can consistently deliver this essential building block is crucial. Whether for small-scale laboratory research or large-scale industrial production, understanding the properties and applications of this versatile oxirane is key. For those looking to purchase this compound, engaging with specialized chemical companies ensures access to technical support and a stable supply chain, facilitating innovation in chemical synthesis and beyond.
Perspectives & Insights
Bio Analyst 88
“Simultaneously, the terminal alkene group can undergo a plethora of transformations, including additions, oxidations, and polymerization reactions.”
Nano Seeker Pro
“This dual functionality makes it a highly sought-after reagent for researchers aiming to synthesize intricate molecular architectures.”
Data Reader 7
“When considering how to buy (S)-2-(But-3-en-1-yl)oxirane, prioritizing high purity (99% min) is paramount to ensure predictable and efficient reaction outcomes.”