9-Chloro-1-nonanol: A Versatile Building Block for Specialty Chemicals
The landscape of specialty chemicals is constantly evolving, driven by the demand for advanced materials with tailored properties. At the heart of this innovation often lie versatile chemical intermediates that serve as foundational building blocks. 9-Chloro-1-nonanol (CAS: 51308-99-7) stands out as one such crucial compound, offering unique structural features that enable the synthesis of a wide array of high-performance specialty chemicals, polymers, and surfactants. As a manufacturer specializing in organic synthesis intermediates, we are proud to supply this key ingredient to drive industry advancements.
The molecular structure of 9-Chloro-1-nonanol (C9H19ClO) is key to its utility. It possesses a linear nine-carbon chain, terminating at one end with a hydroxyl (-OH) group and at the other with a chlorine (-Cl) atom. This distinct dual functionality means it can participate in a wide range of chemical reactions. The hydroxyl group can undergo esterification, etherification, or oxidation, while the chlorine atom is susceptible to nucleophilic substitution. This inherent reactivity makes it an exceptionally adaptable molecule for synthetic chemists.
In the realm of polymers, 9-Chloro-1-nonanol can be incorporated to introduce specific side chains or to act as a monomer in certain polymerization processes. For instance, its long alkyl chain can impart hydrophobicity or flexibility to the resulting polymer backbone. This is particularly useful in the development of advanced coatings, adhesives, or specialized plastic materials. Researchers and formulators looking to buy polymer additives or monomers will find this intermediate a valuable asset.
Surfactants, essential for a multitude of applications from detergents to industrial emulsifiers, also benefit from the inclusion of 9-Chloro-1-nonanol in their synthesis. The long nonyl chain provides the necessary lipophilic tail, while the hydroxyl group can be further functionalized to create hydrophilic heads, forming amphiphilic molecules. This allows for the creation of surfactants with specific emulsifying, wetting, or foaming properties. Companies involved in surfactant manufacturing can find a reliable source for this intermediate.
The synthesis of other specialty chemicals, such as advanced lubricants, flavor and fragrance compounds, or functional dyes, can also leverage the reactivity of 9-Chloro-1-nonanol. Its capacity to introduce a specific chain length and reactive sites makes it a prime candidate for custom synthesis projects aimed at developing novel chemical entities. If your company requires specialty chemical raw materials, consider the potential of this versatile intermediate.
As a dedicated manufacturer of organic synthesis intermediates, we offer 9-Chloro-1-nonanol with a minimum purity of 97.0%. We understand the stringent quality requirements for specialty chemical production and ensure our product meets these demands. For businesses looking to purchase this intermediate in bulk, our facility in China provides a cost-effective and reliable supply chain solution. We offer packaging flexibility, including 200 kg drums and custom options, to suit your operational needs.
We encourage R&D scientists, product developers, and procurement specialists to explore the possibilities that 9-Chloro-1-nonanol offers. Whether you are developing new polymers, formulating advanced surfactants, or synthesizing novel specialty chemicals, our high-purity intermediate can be the key ingredient. Request a quote today to learn more about the price and availability of 9-Chloro-1-nonanol for sale and discover how we can support your innovative projects.
Perspectives & Insights
Bio Analyst 88
“Request a quote today to learn more about the price and availability of 9-Chloro-1-nonanol for sale and discover how we can support your innovative projects.”
Nano Seeker Pro
“The landscape of specialty chemicals is constantly evolving, driven by the demand for advanced materials with tailored properties.”
Data Reader 7
“At the heart of this innovation often lie versatile chemical intermediates that serve as foundational building blocks.”