The Science Behind 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine: Properties and Synthesis
In the intricate world of chemical compounds, understanding the fundamental science behind them is key to unlocking their full potential. 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine, identified by CAS number 80584-91-4, is a prime example of a compound with a robust chemical profile and diverse applications. NINGBO INNO PHARMCHEM CO.,LTD. is committed to providing comprehensive information on such advanced materials, including their inherent properties and the science underpinning their synthesis.
The molecular structure of 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine is central to its functionality. Featuring a symmetrical 1,3,5-triazine ring core, each nitrogen atom in the ring is substituted with a 6-aminocaproic acid chain. This tri-substituted structure, bearing multiple carboxylic acid and amino groups, contributes to its amphiphilic nature and reactivity. The presence of carboxylic acid groups, in particular, makes it a tricarboxylic acid derivative, a class of compounds well-known for their chelating abilities and utility as rust inhibitors. The precise chemical properties of CAS 80584-91-4, such as its molecular weight of 468.55 g/mol and its acidic nature, are critical for its performance in various formulations.
While the detailed synthesis pathways are often proprietary, the general approach to creating such triazine derivatives typically involves reactions with cyanuric chloride or related triazine precursors. The subsequent attachment of the 6-aminocaproic acid chains can be achieved through nucleophilic substitution reactions. The purity levels, often specified as 50%, 65%, 85%, or 99%, indicate the degree of refinement and suitability for different applications, from industrial intermediates to more specialized uses. For those interested in the practicalities of its creation, understanding the general principles of triazine chemistry is beneficial.
The applications of this compound are a direct consequence of its structure and properties. As a modifier for polyester enameled insulation paint, it enhances the resin's performance. Its role as a biocolloid dispersant for wound care suggests a delicate balance of properties suitable for biological systems. Furthermore, its function as a corrosion inhibitor, commonly known as Corrosion inhibitor ABC 730 or Irgacor L 190, highlights its robust metal protection capabilities. NINGBO INNO PHARMCHEM CO.,LTD. continuously researches and verifies the broad applications of 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine to provide the most accurate and useful information to its clients.
Perspectives & Insights
Chem Catalyst Pro
“Furthermore, its function as a corrosion inhibitor, commonly known as Corrosion inhibitor ABC 730 or Irgacor L 190, highlights its robust metal protection capabilities.”
Agile Thinker 7
“continuously researches and verifies the broad applications of 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine to provide the most accurate and useful information to its clients.”
Logic Spark 24
“In the intricate world of chemical compounds, understanding the fundamental science behind them is key to unlocking their full potential.”