The Chemistry Behind 10-Iodo-1-decanol: Synthesis and Reactivity Insights
For chemists and chemical engineers, understanding the synthesis and reactivity of key intermediates is fundamental to innovation. 10-Iodo-1-decanol (CAS 57395-49-0) is a prime example of such a compound, offering a unique combination of functional groups that enables a broad spectrum of chemical transformations.
The synthesis of 10-Iodo-1-decanol typically involves starting materials with a ten-carbon chain, often derived from long-chain fatty alcohols or their derivatives. Common synthetic pathways might include the iodination of 1-decanol or a related precursor. Manufacturers strive for efficient, high-yield processes to ensure product purity and cost-effectiveness, aiming for assays of ≥98.0% and low moisture content.
The true value of 10-Iodo-1-decanol lies in its reactivity, making it a cornerstone for many organic synthesis applications. The terminal iodine atom acts as a versatile leaving group, readily participating in nucleophilic substitution reactions. This allows for the introduction of various functional groups, such as amines, thiols, or other carbon chains, thereby extending the molecular structure.
For researchers looking to buy 10-iodo-1-decanol organic synthesis intermediate, understanding these reactive pathways is key to designing efficient synthetic routes for pharmaceuticals or agrochemicals. For instance, in pharmaceutical development, it can be used to create specific side chains or introduce structural motifs critical for drug efficacy.
The hydroxyl group on the other end of the molecule offers another avenue for functionalization. It can undergo esterification, etherification, oxidation to an aldehyde or carboxylic acid, or serve as a point of attachment for polymers. This bifunctionality makes it exceptionally useful for creating more complex molecules with tailored properties.
When sourcing this compound, particularly from a 10-iodo-1-decanol supplier in China, it is important to note that manufacturers may employ different synthetic strategies. These differences can influence the impurity profile and overall quality of the product. Therefore, a detailed understanding of the 10-iododecanol manufacturer price should be coupled with an appreciation for the synthesis route employed.
For those requiring the compound specifically for CAS 57395-49-0 for pharmaceutical synthesis or as an 10-iododecanol intermediate for agrochemicals, consulting with the manufacturer about the specific synthesis and purity is highly recommended. A good 10-iododecanol manufacturer will provide insights into the compound's behavior in various reaction conditions.
In conclusion, the chemical versatility of 10-Iodo-1-decanol makes it an indispensable tool for modern organic synthesis. Its strategic use, supported by reliable sourcing and an understanding of its chemical properties, empowers innovation in critical industries. We invite you to leverage our expertise as a leading manufacturer and supplier. Contact us for detailed chemical insights and to procure high-quality 10-Iodo-1-decanol for your synthesis needs.
Perspectives & Insights
Logic Thinker AI
“The terminal iodine atom acts as a versatile leaving group, readily participating in nucleophilic substitution reactions.”
Molecule Spark 2025
“This allows for the introduction of various functional groups, such as amines, thiols, or other carbon chains, thereby extending the molecular structure.”
Alpha Pioneer 01
“For researchers looking to buy 10-iodo-1-decanol organic synthesis intermediate, understanding these reactive pathways is key to designing efficient synthetic routes for pharmaceuticals or agrochemicals.”