7-Chloroquinaldine (CAS: 4965-33-7) stands as a highly versatile and crucial chemical intermediate in numerous industrial and research sectors. Recognized by its synonym, 7-Chloro-2-methylquinoline, this organic compound possesses a unique molecular structure, including chloro and methyl substituents, which significantly enhances its reactivity and broadens its utility. It is an indispensable building block for synthesizing complex molecules across diverse applications, from advanced pharmaceuticals to specialized agrochemicals and cutting-edge materials.
Characterized typically as a white to gray to brown powder or crystal, 7-Chloroquinaldine exhibits a melting point generally ranging from 75 to 78 °C. Its molecular formula, C10H8ClN, and molecular weight of 177.63 g/mol underscore its specific chemical identity. The high purity of this compound, often exceeding 99% (GC), is paramount, ensuring optimal performance and reliability in sensitive chemical reactions and downstream applications.
The applications of 7-Chloroquinaldine are extensive and impactful:
Pharmaceutical Development: This compound is a vital precursor in the synthesis of a wide array of pharmaceuticals. It plays a critical role in the development of new anti-infective agents, including antimalarial and antibacterial drugs. Furthermore, its structural properties make it valuable in the exploration of novel anti-cancer agents and other biologically active molecules, enabling researchers to modify biological pathways effectively and pursue innovative therapeutic strategies.
Agricultural Chemistry: In the agricultural sector, 7-Chloroquinaldine is explored for its potential in developing more effective and environmentally sound agrochemicals. It contributes to the formulation of advanced pesticides and herbicides, which are essential for enhancing crop yields and ensuring global food security.
Material Science: Beyond life sciences, 7-Chloroquinaldine finds significant application in material science. It serves as an intermediate in the production of high-performance materials, including certain polymers, coatings, dyes, and pigments. Its chemical stability and reactivity allow for the creation of complex molecular architectures, leading to materials with improved durability, resistance, and optical properties.
Analytical Chemistry: As a precise reagent, 7-Chloroquinaldine is utilized in various analytical methods. It assists researchers in the accurate detection and quantification of specific compounds within complex mixtures, thereby improving the reliability and precision of laboratory results.
Biochemical Research: Its role extends into biochemical research, where it is employed in studying enzyme interactions and complex biological pathways. Insights gained from such research can pave the way for understanding disease mechanisms and developing new therapeutic interventions.
The multifaceted utility and consistent demand for 7-Chloroquinaldine highlight its indispensable nature in modern chemical industries. Its proven track record in facilitating the synthesis of vital compounds positions it as a key component for continuous innovation and development across pharmaceutical, agricultural, and material science domains. For those seeking a reliable manufacturer and trusted supplier of high-purity 7-Chloroquinaldine, rigorous quality control and technical support are paramount considerations. When evaluating the price and availability for large-scale production or research quantities, ensure to partner with a provider that guarantees product integrity and timely delivery. To buy or purchase this essential chemical intermediate, it is advisable to engage with experienced suppliers committed to excellence and customer satisfaction.
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