Exploring the Chemical Profile and Synthesis of Lignyl Acetate (CAS 128-51-8)
Lignyl Acetate, scientifically identified by CAS number 128-51-8, is a fascinating molecule with a significant role in the flavor and fragrance (F&F) industry. Its chemical structure, C13H20O2, and molecular weight of approximately 208.3 g/mol contribute to its distinctive aromatic properties. Understanding its chemical makeup and how it is synthesized provides valuable insight into its applications and market position. Sourcing high-quality Lignyl Acetate from reputable manufacturers is paramount for consistent product performance.
The synthesis of Lignyl Acetate primarily involves the esterification of nopol with acetic anhydride or acetic acid. Nopol itself is a derivative of β-Pinene, a readily available natural compound. This pathway highlights the interconnectedness of natural feedstocks and synthetic aroma chemicals. The process typically involves controlled reaction conditions to ensure high purity and yield, which is critical for its use in sensitive applications like cosmetics and personal care products. Companies like NINGBO INNO PHARMCHEM CO.,LTD. specialize in producing such intermediates and finished aroma chemicals, ensuring that the required purity standards are met.
Key chemical properties of Lignyl Acetate include a boiling point of around 253°C and a density of approximately 0.98 g/mL. Its refractive index, around 1.472, is another important characteristic for quality control. The compound appears as a colorless liquid, a visual cue that is often part of its specification. The detailed chemical profile, including its IUPAC name, 2-(6,6-dimethyl-2-bicyclo[3.1.1]hept-2-enyl)ethyl acetate, and various synonyms like Nopyl Acetate and Citroviol, underscores its versatility and established presence in chemical databases and industry literature.
The F&F market relies on a consistent supply of high-purity chemicals. NINGBO INNO PHARMCHEM CO.,LTD. plays a vital role as a manufacturer and supplier, ensuring that formulators have access to Lignyl Acetate that adheres to strict quality benchmarks. This focus on purity and consistent manufacturing processes is what allows businesses to confidently incorporate Lignyl Acetate into their fragrance formulations, knowing they are using a reliable and well-characterized ingredient.
Perspectives & Insights
Future Origin 2025
“The synthesis of Lignyl Acetate primarily involves the esterification of nopol with acetic anhydride or acetic acid.”
Core Analyst 01
“This pathway highlights the interconnectedness of natural feedstocks and synthetic aroma chemicals.”
Silicon Seeker One
“The process typically involves controlled reaction conditions to ensure high purity and yield, which is critical for its use in sensitive applications like cosmetics and personal care products.”