In the dynamic field of organic chemistry, the availability of reliable and versatile intermediates is fundamental to innovation and production. Tert-Butyl 5-Bromovalerate, identified by its CAS number 88987-42-2, is a prime example of such an essential compound. Its unique chemical structure and reactivity make it a cornerstone for numerous synthetic pathways, particularly in the creation of pharmaceuticals, agrochemicals, and specialized reagents used in biological research.
Understanding the Chemistry of Tert-Butyl 5-Bromovalerate
Tert-Butyl 5-Bromovalerate, also known as tert-butyl 5-bromopentanoate, is characterized by a five-carbon chain terminating in a bromide group and protected at the carboxylic acid terminus by a tert-butyl ester. This structure grants it specific reactivity:
Physically, Tert-Butyl 5-Bromovalerate is typically a liquid, appearing as colorless to light yellow, with a boiling point of 93°C at 1.6 Torr and a density of approximately 1.223 g/cm³. These properties are important for handling and processing in laboratory and industrial settings.
Synthetic Utility and Applications
The value of Tert-Butyl 5-Bromovalerate lies in its broad applicability in chemical synthesis:
Sourcing and Procurement Advice
For professionals looking to buy Tert-Butyl 5-Bromovalerate (CAS 88987-42-2), sourcing from reliable manufacturers is crucial. China is a significant global supplier of such chemical intermediates, often offering competitive pricing and high-purity products. When selecting a supplier, consider these factors:
Procurement managers should actively seek out manufacturers through reputable online platforms or direct contact to request quotes and samples. This proactive approach ensures access to essential materials like Tert-Butyl 5-Bromovalerate for ongoing research and production needs.
In summary, Tert-Butyl 5-Bromovalerate (CAS 88987-42-2) is a pivotal intermediate whose versatility fuels innovation across critical industries. By focusing on quality sourcing from trusted manufacturers, organizations can effectively leverage this compound in their synthetic endeavors.
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