Sourcing 4-(Chloroacetyl)catechol: A Guide for Procurement Professionals
For professionals in the chemical and pharmaceutical industries, the efficient and reliable sourcing of specialized intermediates is a cornerstone of successful operations. Among these, 4-(Chloroacetyl)catechol, also known by its CAS number 99-40-1 and the systematic name 2-Chloro-3',4'-dihydroxyacetophenone, has emerged as a compound of significant interest. Its unique molecular structure positions it as a versatile building block in numerous synthetic pathways, particularly for pharmaceutical applications.
The primary appeal of 4-(Chloroacetyl)catechol lies in its distinct chemical features: an acetophenone backbone substituted with a chlorine atom and two adjacent hydroxyl groups on the phenyl ring. This arrangement bestows upon it a reactivity profile that is highly sought after in organic synthesis. With a molecular formula of C8H7ClO3 and a molecular weight of 186.59, it is readily available from manufacturers, typically boasting high purity levels (often exceeding 97%) to meet the rigorous demands of pharmaceutical R&D and production.
A prominent use for this compound is as a key intermediate in the synthesis of Carbazochrome, a hemostatic drug. Carbazochrome helps manage bleeding by improving the tone of capillaries. The production of such essential medicines relies on a consistent and high-quality supply of precursors like 4-(Chloroacetyl)catechol. Therefore, procurement managers are often on the lookout for dependable manufacturers who can guarantee both the purity and the volume required for industrial-scale synthesis. When searching for this chemical, common queries include 'buy 4-(chloroacetyl)catechol' or '2-chloro-3',4'-dihydroxyacetophenone price'.
Beyond its established role in producing hemostatic agents, 4-(Chloroacetyl)catechol is a valuable asset for researchers engaged in drug discovery. Its structure lends itself to incorporation into various complex molecules, potentially leading to new therapeutic agents. The catechol moiety, in particular, is known for its antioxidant properties, which can be leveraged in the design of novel drugs targeting oxidative stress-related diseases. This broad applicability makes it a frequent subject of study in medicinal chemistry labs.
When sourcing 4-(Chloroacetyl)catechol, it is crucial to engage with manufacturers who can provide comprehensive product specifications and reliable delivery. China has become a global hub for the production of fine chemicals and intermediates, offering competitive pricing and significant production capacities. Companies often seek 'cas 99-40-1 supplier China' to identify reputable producers. Ensuring that the supplier adheres to strict quality control measures and can provide necessary documentation, such as Certificates of Analysis (COA), is paramount.
Furthermore, the compound's potential applications are being explored in fields beyond pharmaceuticals. Its chemical structure suggests utility in the synthesis of certain agrochemicals and specialty materials. As industries continually seek novel compounds and improved formulations, intermediates like 4-(Chloroacetyl)catechol offer pathways to innovation.
In summary, 4-(Chloroacetyl)catechol (CAS 99-40-1) is a high-value chemical intermediate with significant applications, particularly in the pharmaceutical sector. For procurement professionals aiming to secure this compound, focusing on purity, consistent supply, and competitive pricing from reputable manufacturers, especially those in China, is essential. A thorough understanding of its properties and applications, coupled with diligent supplier selection, will ensure the success of your synthetic projects and contribute to the development of groundbreaking products.
Perspectives & Insights
Silicon Analyst 88
“Its structure lends itself to incorporation into various complex molecules, potentially leading to new therapeutic agents.”
Quantum Seeker Pro
“The catechol moiety, in particular, is known for its antioxidant properties, which can be leveraged in the design of novel drugs targeting oxidative stress-related diseases.”
Bio Reader 7
“This broad applicability makes it a frequent subject of study in medicinal chemistry labs.”