Understanding 10-Bromo-1-decene: Synthesis, Properties, and Industrial Relevance
The chemical industry relies heavily on a range of foundational compounds that enable the creation of more complex and specialized substances. Among these is 10-Bromo-1-decene, identified by CAS number 62871-09-4, a molecule whose utility as a chemical intermediate is recognized and utilized by NINGBO INNO PHARMCHEM CO.,LTD. This article aims to shed light on its synthesis, key properties, and the industrial relevance that makes it a sought-after compound.
The synthesis of 10-Bromo-1-decene typically involves the functionalization of a C10 precursor. A common method involves the reaction of 9-decen-1-ol with phosphorus tribromide (PBr3) or other brominating agents. Alternatively, reactions like the Appel reaction, employing triphenylphosphine and carbon tetrabromide with the corresponding alcohol, can also yield this product. The presence of the terminal alkene group requires careful control of reaction conditions to avoid unwanted side reactions, such as addition across the double bond or isomerization. NINGBO INNO PHARMCHEM CO.,LTD. employs optimized synthetic routes to ensure high purity and consistent quality of the final product.
The key properties of 10-Bromo-1-decene contribute significantly to its role as a versatile intermediate. It is typically a colorless to pale yellow liquid with a molecular weight of approximately 219.17 g/mol. Its boiling point is around 239.3 °C at atmospheric pressure, though it is often distilled under reduced pressure. The molecule's bifunctionality – the alkene and the bromide – allows for a wide range of chemical transformations. As a supplier, NINGBO INNO PHARMCHEM CO.,LTD. provides detailed specifications, including purity levels (often >95% or >97%), which are crucial for its use in sensitive applications like pharmaceutical synthesis. The opportunity to buy 10-bromo-1-decene from a trusted source like NINGBO INNO PHARMCHEM CO.,LTD. ensures that research and production workflows are not hindered by reagent quality issues.
Industrially, 10-Bromo-1-decene is valued for its applications in synthesizing polymers, specialty chemicals, and active pharmaceutical ingredients (APIs). In polymer science, it can be used as a functional monomer or as an initiator for controlled polymerization techniques, leading to polymers with tailored molecular weights and architectures. Its C10 chain length makes it suitable for applications requiring lipophilicity or specific chain lengths in surfactants, lubricants, and cosmetic ingredients. The chemical intermediate aspect of 10-bromo-1-decene is particularly important for companies involved in custom synthesis, where it serves as a reliable starting point for creating bespoke molecules for a variety of end-uses.
The price of 10-bromo-1-decene is influenced by factors such as purity, order volume, and manufacturing costs. NINGBO INNO PHARMCHEM CO.,LTD. is committed to offering competitive pricing while maintaining the high standards of quality that its clients expect. This dedication ensures that the compound remains an economically viable option for both research laboratories and large-scale industrial production.
In conclusion, 10-Bromo-1-decene (CAS 62871-09-4) is a fundamental chemical intermediate with significant industrial relevance. Its accessible synthesis, versatile properties, and broad range of applications in organic synthesis and material science make it an essential component in the chemical industry. NINGBO INNO PHARMCHEM CO.,LTD. plays a vital role in ensuring the availability of this key compound, supporting scientific and industrial progress.
Perspectives & Insights
Data Seeker X
“This article aims to shed light on its synthesis, key properties, and the industrial relevance that makes it a sought-after compound.”
Chem Reader AI
“The synthesis of 10-Bromo-1-decene typically involves the functionalization of a C10 precursor.”
Agile Vision 2025
“A common method involves the reaction of 9-decen-1-ol with phosphorus tribromide (PBr3) or other brominating agents.”