Understanding the Chemical Formula and Structure of CAS 348086-71-5
For scientists and procurement specialists in the chemical, pharmaceutical, and cosmetic industries, a deep understanding of chemical compounds is fundamental. Benzeneacetamide, N-[5-(aminosulfonyl)-4-methyl-2-thiazolyl]-N-methyl-4-(2-pyridinyl)-, identified by its CAS number 348086-71-5, is a complex organic molecule that warrants detailed examination of its chemical formula and structure to appreciate its potential applications and the importance of sourcing it from reliable manufacturers.
Decoding the Chemical Identity: CAS 348086-71-5
The chemical identity of a compound is its bedrock, and for CAS 348086-71-5, this starts with its nomenclature and formula. The IUPAC name, N-methyl-N-(4-methyl-5-sulfamoyl-1,3-thiazol-2-yl)-2-[4-(pyridin-2-yl)phenyl]acetamide, precisely describes its molecular architecture. The commonly cited chemical formula is C18H18N4O3S2. This formula indicates that each molecule of the compound contains 18 carbon atoms, 18 hydrogen atoms, 4 nitrogen atoms, 3 oxygen atoms, and 2 sulfur atoms. The presence of multiple heteroatoms, including nitrogen and sulfur, alongside aromatic rings (phenyl and pyridinyl) and functional groups like sulfonamide and acetamide, suggests a rich potential for chemical reactivity and biological activity.
Structural Significance and Applications
The structure of Benzeneacetamide, N-[5-(aminosulfonyl)-4-methyl-2-thiazolyl]-N-methyl-4-(2-pyridinyl)- is intricate, featuring a central acetamide linkage connecting a substituted phenyl group (which is further linked to a pyridinyl group) to a substituted thiazole ring. The thiazole ring itself bears a methyl group and a sulfamoyl (aminosulfonyl) group. This complex arrangement is not arbitrary; it dictates the compound's physical and chemical properties, such as its solubility, stability, and reactivity. These characteristics, in turn, determine its suitability for specific applications. As a pharmaceutical intermediate, this structure provides a scaffold that can be modified through further chemical synthesis to create new drug molecules. In cosmetics, such complex organic structures might be employed for their specific interactions within formulations, potentially contributing to stability, efficacy, or sensory profiles.
Sourcing High-Quality Material with the Correct Formula
When procurement managers or R&D scientists look to buy CAS 348086-71-5, they rely on suppliers to accurately represent its chemical formula and purity. Manufacturers based in China, known for their extensive fine chemical production, often provide this compound with a purity of 98% and clearly state the formula C18H18N4O3S2. It is essential to request a Certificate of Analysis (CoA) that not only confirms the purity but also verifies the chemical structure through analytical methods like NMR or Mass Spectrometry, where applicable. Understanding the molecular weight of approximately 402.49 g/mol also aids in accurate stoichiometric calculations for synthesis.
The Importance of Manufacturers and Suppliers
Partnering with established manufacturers and suppliers, whether for initial sample testing or for bulk orders (e.g., 10 grams to 50 tons), is critical. These entities ensure that the chemical formula and structure correspond to the CAS number and that the product is supplied in the specified physical form, typically a white powder. Their adherence to quality control standards guarantees that the intermediate will perform as expected in downstream applications, whether in pharmaceutical synthesis or cosmetic product formulation.
By appreciating the detailed chemical formula and structural nuances of Benzeneacetamide, N-[5-(aminosulfonyl)-4-methyl-2-thiazolyl]-N-methyl-4-(2-pyridinyl)- (CAS 348086-71-5), buyers can make more informed decisions when sourcing this valuable compound from reputable manufacturers and suppliers.
Perspectives & Insights
Nano Explorer 01
“The IUPAC name, N-methyl-N-(4-methyl-5-sulfamoyl-1,3-thiazol-2-yl)-2-[4-(pyridin-2-yl)phenyl]acetamide, precisely describes its molecular architecture.”
Data Catalyst One
“This formula indicates that each molecule of the compound contains 18 carbon atoms, 18 hydrogen atoms, 4 nitrogen atoms, 3 oxygen atoms, and 2 sulfur atoms.”
Chem Thinker Labs
“The presence of multiple heteroatoms, including nitrogen and sulfur, alongside aromatic rings (phenyl and pyridinyl) and functional groups like sulfonamide and acetamide, suggests a rich potential for chemical reactivity and biological activity.”