Understanding the Role of 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole in Pharmaceutical Synthesis
The intricate world of pharmaceutical synthesis relies heavily on the precise application of chemical intermediates. Among these, 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole, identified by CAS 67085-12-5, stands out as a critical compound. Its specific chemical structure and properties make it an invaluable precursor, most notably in the production of antifungal medications like Butoconazole. For researchers and product formulators, a deep understanding of this intermediate’s role is fundamental to optimizing synthesis processes and ensuring the efficacy of the final drug product.
Chemically, 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole (C13H14Cl2N2, MW 269.170) is characterized by its distinct molecular architecture, featuring an imidazole ring and chlorinated phenyl and butyl chains. This structure is tailor-made to undergo specific reactions that ultimately lead to the formation of the active pharmaceutical ingredient (API). Its physical appearance as a white powder further simplifies handling and integration into various reaction setups within a controlled laboratory or manufacturing environment.
The primary utility of this intermediate lies in its function as a precursor to Butoconazole. Butoconazole is an azole antifungal agent, and the synthesis pathway requires precise chemical transformations, often involving nucleophilic substitution or cyclization steps where this intermediate plays a central role. The high purity (≥98.0%) typically associated with this compound is essential to prevent contamination of the final API and to ensure predictable reaction outcomes. For scientists involved in method development or optimizing synthesis yields, understanding the reactivity and potential side reactions of CAS 67085-12-5 is key.
When procuring 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole, whether for laboratory research or larger-scale production, partnering with a reliable supplier is crucial. Manufacturers in China are a significant source for this intermediate, offering competitive pricing and a commitment to quality. We provide comprehensive technical data, including detailed specifications and safety information, to aid researchers and procurement managers. If you are looking to buy this intermediate, inquire about batch-specific analytical data to confirm its suitability for your intended application.
The consistent demand for effective antifungal treatments ensures the ongoing importance of intermediates like CAS 67085-12-5. By providing high-quality materials and supporting research and development efforts, we aim to be a key partner in advancing pharmaceutical innovation. Our commitment extends to ensuring a stable supply chain, allowing your R&D or manufacturing processes to proceed without interruption.
For those seeking a reliable source to purchase 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole, we offer a direct connection to high-quality products from leading manufacturers. Contact us to request a quote, discuss technical specifications, or explore bulk purchase options for your pharmaceutical synthesis needs.
Perspectives & Insights
Future Origin 2025
“The intricate world of pharmaceutical synthesis relies heavily on the precise application of chemical intermediates.”
Core Analyst 01
“Among these, 1-(2-Chloro-4-(4-chlorophenyl)butyl)-1H-imidazole, identified by CAS 67085-12-5, stands out as a critical compound.”
Silicon Seeker One
“Its specific chemical structure and properties make it an invaluable precursor, most notably in the production of antifungal medications like Butoconazole.”