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Specifications
| Appearance | Yellow or off-white powder |
| Purity (HPLC) | 99% min |
| Identification | The retention time of the main peak of the test sample is consistent with that of the reference substance |
| Melting range | 70 – 77 °C |
| Residue on ignition | 0.2% max |
| Individual impurity | 0.2% max |
Applications
7-Chloro-2-methylquinoline is a heteroaromatic compound widely used as an intermediate in organic and pharmaceutical synthesis. Its quinoline backbone, substituted with a chlorine atom and a methyl group, makes it a valuable starting material for preparing bioactive molecules. In pharmaceutical research, it is employed in the synthesis of antimalarial, antibacterial, and anticancer agents, as quinoline derivatives are well known for their diverse biological activities. The compound is also used in agrochemical development, particularly in the design of herbicides, fungicides, and insecticides. Beyond life sciences, 7-chloro-2-methylquinoline serves as a building block in dye chemistry, specialty materials, and heterocyclic ligand systems, where its electronic and structural properties can be tailored for advanced applications.
Benefits
The benefits of 7-chloro-2-methylquinoline lie in its structural versatility and reactivity, which allow chemists to explore a wide range of functional derivatives. The quinoline ring system is a privileged scaffold in medicinal chemistry, and the chloro substituent facilitates further functionalization via substitution or coupling reactions. This makes it especially useful in creating libraries of compounds for drug discovery and agrochemical research. Its dual substituents enhance both reactivity and selectivity, improving the efficiency of synthetic pathways. Furthermore, its compatibility with modern synthetic methods, such as cross-coupling reactions, provides flexibility for tailoring derivatives with specific biological or material properties. Overall, the compound offers a cost-effective and efficient route to developing high-value products in pharmaceuticals, agriculture, and specialty chemicals.
Conclusion
7-Chloro-2-methylquinoline (CAS 4965-33-7) is an important heterocyclic compound with broad applications in drug discovery, agrochemical development, and materials science. Its functionalized quinoline structure provides chemists with a versatile platform for synthesizing biologically active compounds and advanced chemical products. With benefits including structural adaptability, synthetic efficiency, and wide-ranging applicability, it remains a valuable intermediate for industries seeking innovation in medicine, agriculture, and specialty chemicals.

