Classification: Pharmaceutical Intermediates
Cas NO.: 161798-01-2
Name: 5-Thiazolecarboxylicacid. 2-(3-formyl-4-hydroxyphenyl)-4-
methy-. ethyl ester
Molecular Formula: C14H13NO4S
Melting Point: 113.0 to 117.0 deg-C
Boiling Point: 446.7 °C at 760 mmHg
*The following content is generated by AI and is for reference only.
6-(1-Bromoethyl)-4-chloro-5-fluoropyrimidine is a specialized heterocyclic organic compound widely utilized in medicinal chemistry and agrochemical research. With the molecular formula C6H5BrClFN3, this molecule features a pyrimidine core substituted with three distinct halogen atoms: chlorine at position 4, fluorine at position 5, and a bromoethyl group at position 6. Its unique structural configuration makes it an invaluable building block for synthesizing complex pharmaceutical agents and functional materials. The presence of multiple reactive sites allows chemists to perform various nucleophilic substitutions and cross-coupling reactions efficiently, facilitating the construction of diverse molecular scaffolds.
The primary application of this compound lies in the development of novel bioactive molecules. In the pharmaceutical sector, pyrimidine derivatives are known for their significant biological activities, including antiviral, anticancer, and antibacterial properties. By incorporating this specific intermediate into synthetic pathways, researchers can optimize drug candidates with improved potency and selectivity. For instance, the fluorine atom often enhances metabolic stability and lipophilicity, while the bromoethyl group serves as a versatile handle for further derivatization via palladium-catalyzed coupling reactions. Similarly, in the agricultural industry, such halogenated pyrimidines are explored for creating new generation pesticides and herbicides that target specific pests or weeds with minimal environmental impact.
Although specific commercial availability may vary by region, this chemical is typically sourced from specialty suppliers catering to the fine chemical and research markets. It is generally handled under standard safety protocols due to its reactivity and potential toxicity associated with halogenated organics. Researchers must ensure proper storage conditions, avoiding moisture and light, to maintain purity and stability. As the demand for targeted therapies and sustainable agricultural solutions grows, compounds like 6-(1-Bromoethyl)-4-chloro-5-fluoropyrimidine remain critical tools in modern chemical synthesis. Their ability to bridge simple starting materials with complex end-products underscores their importance in advancing scientific innovation across multiple disciplines. Continued study of these intermediates promises to yield breakthroughs in drug discovery and material science, driving progress in global health and food security.