The Chemical Profile of 2-Acetyl-1-methylpyrrole: Properties and Applications
Understanding the detailed chemical and physical properties of a compound is fundamental to its effective application in industry. 2-acetyl-1-methylpyrrole (CAS 932-16-1) is no exception, possessing a unique profile that makes it valuable across several sectors.
Physically, 2-acetyl-1-methylpyrrole typically appears as a colorless to yellow-orange clear liquid. Key physical parameters include a boiling point in the range of 200-202°C at atmospheric pressure and a refractive index typically between 1.53900 to 1.54500 at 20°C. These properties are crucial for formulators when designing products where precise physical characteristics are required.
Chemically, its molecular formula is C7H9NO, with a molecular weight of approximately 123.15 g/mol. The presence of the pyrrole ring and the acetyl group contributes to its reactivity, making it a useful intermediate in organic synthesis. Its solubility in water is noted to be moderate, facilitating its use in various solvent systems.
The applications of 2-acetyl-1-methylpyrrole are diverse. It is widely recognized in the flavor and fragrance industry for its desirable nutty, floral, and fruity aroma, enhancing products ranging from baked goods to perfumes. Furthermore, its role as a building block in medicinal chemistry and agrochemical research highlights its importance in the development of new pharmaceuticals and crop protection agents. Companies looking to buy 2-acetyl-1-methylpyrrole can rely on its consistent properties for predictable results in their applications.
As a leading manufacturer and supplier, NINGBO INNO PHARMCHEM CO.,LTD. provides high-purity 2-acetyl-1-methylpyrrole that meets stringent quality standards. We are committed to offering our clients excellent wholesale prices and reliable service for this versatile chemical. Whether you are involved in flavor formulation, fragrance creation, or advanced chemical synthesis, our product is engineered to meet your exacting requirements.
Physically, 2-acetyl-1-methylpyrrole typically appears as a colorless to yellow-orange clear liquid. Key physical parameters include a boiling point in the range of 200-202°C at atmospheric pressure and a refractive index typically between 1.53900 to 1.54500 at 20°C. These properties are crucial for formulators when designing products where precise physical characteristics are required.
Chemically, its molecular formula is C7H9NO, with a molecular weight of approximately 123.15 g/mol. The presence of the pyrrole ring and the acetyl group contributes to its reactivity, making it a useful intermediate in organic synthesis. Its solubility in water is noted to be moderate, facilitating its use in various solvent systems.
The applications of 2-acetyl-1-methylpyrrole are diverse. It is widely recognized in the flavor and fragrance industry for its desirable nutty, floral, and fruity aroma, enhancing products ranging from baked goods to perfumes. Furthermore, its role as a building block in medicinal chemistry and agrochemical research highlights its importance in the development of new pharmaceuticals and crop protection agents. Companies looking to buy 2-acetyl-1-methylpyrrole can rely on its consistent properties for predictable results in their applications.
As a leading manufacturer and supplier, NINGBO INNO PHARMCHEM CO.,LTD. provides high-purity 2-acetyl-1-methylpyrrole that meets stringent quality standards. We are committed to offering our clients excellent wholesale prices and reliable service for this versatile chemical. Whether you are involved in flavor formulation, fragrance creation, or advanced chemical synthesis, our product is engineered to meet your exacting requirements.
Perspectives & Insights
Chem Catalyst Pro
“These properties are crucial for formulators when designing products where precise physical characteristics are required.”
Agile Thinker 7
“Chemically, its molecular formula is C7H9NO, with a molecular weight of approximately 123.”
Logic Spark 24
“The presence of the pyrrole ring and the acetyl group contributes to its reactivity, making it a useful intermediate in organic synthesis.”