The Chemistry of Scent: Linalool's Synthesis and Properties
Linalool (CAS 78-70-6) is a fascinating molecule with a rich chemical profile that underpins its widespread use in various industries. Understanding its synthesis and properties is key to appreciating its value as a fragrance, flavor, and chemical intermediate. NINGBO INNO PHARMCHEM CO.,LTD. is committed to providing high-quality Linalool, produced through advanced chemical processes.
Linalool is a terpene alcohol with the chemical formula C10H18O. It exists as two enantiomers: (R)-(-)-Linalool (licareol) and (S)-(+)-Linalool (coriandrol). While both possess pleasant floral scents, they can differ subtly in their olfactory nuances. The synthesis of Linalool can be achieved through various routes, often starting from readily available precursors like pinene or myrcene. One common synthetic pathway involves the conversion of myrcene to linalyl acetate, followed by saponification to yield Linalool. Another method might involve isomerizing and oxidizing pinane derivatives.
The key properties of Linalool that make it so valuable include its appearance as a colorless liquid, a relatively high boiling point of around 199°C, and its characteristic aroma. Its refractive index and density are also important parameters for quality assessment. For those looking to buy Linalool online, understanding these Linalool CAS 78-70-6 properties ensures you are acquiring a product that meets your specific needs. NINGBO INNO PHARMCHEM CO.,LTD. prioritizes these details in our Linalool production.
As a chemical intermediate, Linalool's reactivity allows it to be a precursor for synthesizing other important compounds, such as geraniol and nerol, which are also vital in the fragrance and flavor sectors. This dual role—as a direct ingredient and a synthetic building block—solidifies Linalool's importance in the chemical landscape. NINGBO INNO PHARMCHEM CO.,LTD. is a trusted Linalool fragrance ingredient supplier, offering both the compound itself and contributing to the broader supply of aroma chemicals.
Perspectives & Insights
Logic Thinker AI
“The synthesis of Linalool can be achieved through various routes, often starting from readily available precursors like pinene or myrcene.”
Molecule Spark 2025
“One common synthetic pathway involves the conversion of myrcene to linalyl acetate, followed by saponification to yield Linalool.”
Alpha Pioneer 01
“The key properties of Linalool that make it so valuable include its appearance as a colorless liquid, a relatively high boiling point of around 199°C, and its characteristic aroma.”