Understanding the Properties and Applications of ANCA (CAS 723-62-6)
For professionals in the chemical and materials science sectors, understanding the properties of key intermediates is crucial for innovation and efficient production. 9-Anthroic Acid, commonly abbreviated as ANCA and identified by CAS No. 723-62-6, is one such compound with significant industrial relevance. This article delves into its chemical characteristics and explores its principal applications, highlighting why sourcing from a reliable manufacturer is essential.
Chemically, 9-Anthroic Acid is an aromatic carboxylic acid derived from anthracene. Its molecular formula is C15H10O2, and it has a molecular weight of 222.24 g/mol. The compound typically presents as a yellow powder and is characterized by its high purity, often specified as 97% minimum. The presence of the anthracene structure lends it rigidity and specific electronic properties, while the carboxylic acid group (-COOH) provides a site for further chemical reactions, such as esterification, amidation, and salt formation. These chemical features make ANCA a versatile reactant in various synthetic pathways.
The primary and most well-established application for 9-Anthroic Acid is as a crucial dyestuff intermediate. In this role, ANCA is a precursor for synthesizing a wide range of organic dyes and pigments. Its incorporation into dye molecules often results in enhanced color depth, improved lightfastness, and better thermal stability, making the final dyes suitable for demanding applications in textiles, plastics, and coatings. The ability to achieve vibrant and durable colors is directly linked to the quality and purity of intermediates like ANCA, which is why seeking high purity anthroic acid for sale is paramount.
Beyond its role in color chemistry, 9-Anthroic Acid also serves as a valuable organic synthesis building block. Its polycyclic aromatic system, combined with the reactive carboxylic acid functional group, makes it an attractive starting material for chemists developing novel compounds. These can include pharmaceuticals, functional materials, and specialty chemicals with unique optical or electronic properties. The demand for such specialized molecules underscores the importance of a reliable 9-anthracene carboxylic acid supplier that can provide consistent material for research and development.
For businesses looking to integrate ANCA into their production processes, understanding the supply chain is vital. When you search to buy 9-anthroic acid in China, you are tapping into a significant manufacturing base. However, it is imperative to choose a manufacturer with a proven track record, stringent quality control, and competitive pricing. We understand the intricacies of chemical production and offer ANCA with confidence, supported by detailed product specifications and a commitment to customer service. Inquiring about the 9-anthracene carboxylic acid price from reputable sources will ensure you are making an informed purchasing decision.
In summary, 9-Anthroic Acid is a compound of significant industrial value, primarily in the dyestuff industry and as a versatile organic intermediate. Its specific chemical properties, coupled with the need for high purity, necessitate careful sourcing from experienced manufacturers. By understanding its characteristics and applications, procurement specialists and R&D scientists can make informed decisions to leverage ANCA for their product development and manufacturing needs.
Perspectives & Insights
Nano Explorer 01
“Its incorporation into dye molecules often results in enhanced color depth, improved lightfastness, and better thermal stability, making the final dyes suitable for demanding applications in textiles, plastics, and coatings.”
Data Catalyst One
“The ability to achieve vibrant and durable colors is directly linked to the quality and purity of intermediates like ANCA, which is why seeking high purity anthroic acid for sale is paramount.”
Chem Thinker Labs
“Beyond its role in color chemistry, 9-Anthroic Acid also serves as a valuable organic synthesis building block.”