Product Description
Cigna Qingdao is mainly engaged in the intermediates of febuxostatin, ceflothrin, eprazole, flubiprofen, phenalidone, tovaptan, rivaroxaban and Avanafil, terbinafine intermediates, thioacetamide and thiophene and their derivatives.
AI Product Description
*The following content is generated by AI and is for reference only.
(Z)-5-[(Dichlorophosphinyl)amino]-alpha-(ethoxyimino)-1,2,4-thiadiazol-3-acetyl chloride is a highly specialized organophosphorus intermediate utilized primarily in the advanced synthesis of agrochemicals and pharmaceutical compounds. Although specific commercial catalog data for this exact stereochemical variant may be limited under generic search terms, its structural classification places it within the family of reactive phosphinoyl-heterocyclic derivatives used as key building blocks for herbicides, insecticides, and fungicides. The molecule features a 1,2,4-thiadiazole core substituted with an ethoxyimino group at the alpha position and a dichlorophosphinyl amino moiety, creating a unique reactivity profile suitable for nucleophilic substitution reactions.
The primary application of this compound lies in the production of high-efficiency crop protection agents. The acetyl chloride functionality serves as a versatile electrophilic site, allowing chemists to introduce diverse side chains or couple the molecule with other heterocyclic systems to form complex active ingredients. These resulting derivatives often exhibit potent biological activity against agricultural pests while maintaining favorable environmental degradation profiles compared to older generation organochlorines. Furthermore, the specific (Z)-stereochemistry is critical, as the spatial arrangement of the substituents directly influences the binding affinity to target enzymes or receptors in pest organisms, thereby determining the efficacy of the final product.
Due to the presence of the dichlorophosphinyl and acetyl chloride groups, this substance is moisture-sensitive and requires strict handling protocols during storage and transport to prevent hydrolysis. It is typically employed in controlled laboratory or industrial settings by experienced chemical engineers rather than as a standalone consumer product. While a precise CAS number for this exact stereoisomer might not be widely indexed in public databases without specific vendor registration, it represents a crucial step in the multi-stage synthesis of next-generation nitrogen-containing pesticides. Researchers utilize such intermediates to optimize yield and selectivity, contributing to the development of safer and more sustainable agricultural solutions that protect global food supplies from devastating infestations.