The Essential Role of 10-Bromo-1-decene in Modern Chemical Synthesis
In the intricate world of chemical synthesis, specific molecules stand out for their versatility and foundational importance. 10-Bromo-1-decene, identified by its CAS number 62871-09-4, is one such compound that NINGBO INNO PHARMCHEM CO.,LTD. frequently utilizes to drive innovation. This article delves into the critical functions and applications of 10-Bromo-1-decene, highlighting why understanding its properties is key for advancements in various scientific fields.
10-Bromo-1-decene is a bifunctional molecule, possessing both a terminal alkene group and a primary alkyl bromide. This unique combination makes it an exceptionally valuable intermediate in organic synthesis. The bromide group is an excellent leaving group, readily participating in nucleophilic substitution reactions and various cross-coupling chemistries, such as Suzuki, Heck, or Sonogashira couplings. These reactions are fundamental for building carbon-carbon bonds, essential for the construction of complex organic structures, including pharmaceuticals, agrochemicals, and advanced materials. The presence of the alkene moiety further expands its reactivity, allowing for participation in addition reactions, polymerizations, and other transformations that modify or extend the carbon chain.
The importance of 10-bromo-1-decene as a building block cannot be overstated. For example, in the pursuit of novel pharmaceutical agents, chemists often require precisely functionalized long-chain molecules. 10-Bromo-1-decene serves as an ideal starting point, allowing for the sequential introduction of different functional groups. The ability to buy 10-bromo-1-decene from reliable suppliers like NINGBO INNO PHARMCHEM CO.,LTD. ensures that research and development pipelines remain robust. The price of 10-bromo-1-decene can vary based on purity and quantity, but its strategic value often outweighs the cost in the context of developing high-value products.
Beyond pharmaceuticals, 10-bromo-1-decene finds significant applications in material science. Its structure makes it suitable for synthesizing functionalized polymers. For instance, it can be used as a macroinitiator for controlled radical polymerization techniques, leading to polymers with well-defined architectures and properties. The alkene group can also be incorporated into polymer backbones or side chains, imparting specific characteristics such as hydrophobicity or reactivity. Researchers often explore the synthesis of 10-bromo-1-decene to create custom monomers for specialized polymer applications, including advanced coatings, adhesives, and electronic materials.
Moreover, understanding the chemical intermediate uses of 10-bromo-1-decene is crucial for process chemists aiming to optimize reaction conditions and yields. Its properties, such as its boiling point and density, inform handling and purification procedures. NINGBO INNO PHARMCHEM CO.,LTD. is committed to providing high-quality chemicals, ensuring that the 10-bromo-1-decene supplied meets stringent purity standards necessary for demanding applications. The company's focus on quality and efficiency in supplying such vital intermediates supports the broader scientific community's efforts in discovery and product development.
In summary, 10-Bromo-1-decene (CAS 62871-09-4) is an indispensable tool for chemists and material scientists. Its dual functionality provides unparalleled versatility in building complex molecular architectures and designing novel materials. As a reliable supplier, NINGBO INNO PHARMCHEM CO.,LTD. is proud to contribute to the progress of scientific research and industrial innovation by providing this essential chemical intermediate.
Perspectives & Insights
Silicon Analyst 88
“This unique combination makes it an exceptionally valuable intermediate in organic synthesis.”
Quantum Seeker Pro
“The bromide group is an excellent leaving group, readily participating in nucleophilic substitution reactions and various cross-coupling chemistries, such as Suzuki, Heck, or Sonogashira couplings.”
Bio Reader 7
“These reactions are fundamental for building carbon-carbon bonds, essential for the construction of complex organic structures, including pharmaceuticals, agrochemicals, and advanced materials.”