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Oct . 14, 2024 03:32 Back to list

4,7-dichloroquinoline cas 86-98-6 suppliers



The Importance of 4,7-Dichloroquinoline in Chemical Research and Industry


4,7-Dichloroquinoline, with the CAS number 86-98-6, is a significant compound in the realm of organic chemistry. Known for its distinctive structure and chemical properties, it has attracted the attention of numerous industries, especially those focused on pharmaceuticals, agrochemicals, and material sciences. This article will delve into the importance of 4,7-dichloroquinoline, its applications, synthesis, and the suppliers who offer this compound for research and commercial purposes.


Chemical Structure and Properties


4,7-Dichloroquinoline is derived from quinoline, a bicyclic aromatic organic compound. Its molecular formula is C9H6Cl2N, indicating the presence of two chlorine atoms at the 4 and 7 positions of the quinoline ring. These substitutions alter the electronic properties of the molecule, making it a versatile intermediate for various chemical reactions. The compound is often characterized by its yellowish crystalline appearance, with a melting point of approximately 58-60°C.


The unique structure of 4,7-dichloroquinoline allows it to participate in nucleophilic substitutions and other electrophilic reactions, making it an essential building block for more complex molecules. Its stability and reactivity under various conditions also render it useful in different synthesis pathways.


Applications in Pharmaceuticals


One of the most significant applications of 4,7-dichloroquinoline is in the pharmaceutical industry. The compound has been investigated for its potential as an antimalarial agent, similar to other quinoline derivatives. The modifications in its structure can lead to compounds with enhanced efficacy and lower toxicity profiles. Researchers have found that certain derivatives of 4,7-dichloroquinoline exhibit antibacterial and antiviral properties, opening new avenues for drug development.


Moreover, its role in the synthesis of other bioactive molecules cannot be overstated. The compound serves as a key intermediate in the preparation of various pharmaceuticals, including anticancer agents and medications targeting neurological disorders. The versatility of 4,7-dichloroquinoline in diverse therapeutic areas underscores its importance in drug discovery.


Agrochemical Uses


4,7-dichloroquinoline cas 86-98-6 suppliers

4,7-dichloroquinoline cas 86-98-6 suppliers

In addition to its pharmaceutical applications, 4,7-dichloroquinoline also finds utility in the agrochemical sector. It is employed in the synthesis of certain pesticides and herbicides that help in managing crop diseases and pests. The compound’s ability to inhibit specific enzymes and disrupt biological pathways in target organisms makes it valuable in developing effective agrochemicals that protect crops while minimizing impacts on non-target species.


With the growing emphasis on sustainable agriculture, the development of more selective and environmentally friendly agrochemicals is crucial. Research into 4,7-dichloroquinoline derivatives has been aimed at discovering compounds that can effectively control pests while being less harmful to beneficial insects and other wildlife.


Synthesis and Availability


The synthesis of 4,7-dichloroquinoline can be achieved through several methods, including chlorination of quinoline or more complex multi-step synthesis involving other reagents. The choice of synthesis pathway depends on the desired yield and purity of the compound.


Given its importance in various fields, many chemical suppliers offer 4,7-dichloroquinoline. These suppliers range from large-scale manufacturers to smaller specialized chemical companies. They provide products for both research and industrial applications, addressing the needs of laboratories and companies involved in drug development, agrochemicals, and advanced materials.


When selecting a supplier, it is essential to consider factors such as the quality of the product, compliance with safety and regulatory standards, and the supplier's reputation in the market. Reliable suppliers often provide comprehensive technical data sheets and safety information to assist researchers and practitioners in handling the compound safely and effectively.


Conclusion


In conclusion, 4,7-dichloroquinoline is a compound of significant interest in the fields of chemistry and industry. Its versatile applications in pharmaceuticals and agrochemicals illustrate its importance as a building block for essential products. As research continues to explore its potential, the compound's future in drug discovery and agricultural applications looks promising. With a variety of suppliers available, researchers can access this crucial compound for their studies, leading to innovations that may benefit healthcare and agriculture in the near future.


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