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The Chemical Profile of 2-Fluoroanisole (CAS 321-28-8): Synthesis and Applications

2-Fluoroanisole, identified by its CAS number 321-28-8, is a noteworthy compound within the fine chemical sector, particularly valued for its role in organic synthesis. This fluorinated aromatic ether, also known as 1-fluoro-2-methoxybenzene, serves as a fundamental building block in the creation of more complex chemical structures, underpinning advancements in fields ranging from pharmaceuticals to material science.

The chemical profile of 2-Fluoroanisole is well-defined, providing chemists with the necessary data for its effective utilization. Its molecular formula is C7H7FO, with a molecular weight of 126.13 g/mol. Typically appearing as a liquid, it possesses a boiling point of around 152-155 °C and a flash point of approximately 49.8 °C, indicating it requires careful handling and storage. These parameters are crucial for anyone looking to buy 2-Fluoroanisole and integrate it into their synthetic processes. Understanding the 2-Fluoroanisole chemical properties ensures its appropriate application in reactions and process development.

The synthetic versatility of 2-Fluoroanisole makes it a sought-after intermediate. Its strategic structure, featuring both a fluorine atom and a methoxy substituent on an aromatic ring, allows for a variety of chemical transformations, including electrophilic aromatic substitution, nucleophilic displacement, and various coupling reactions. These reactions are vital for constructing complex molecules, especially in the pharmaceutical industry where fluorinated compounds often exhibit enhanced biological activity and metabolic stability. The ability to reliably source this compound from a reputable supplier in China, such as NINGBO INNO PHARMCHEM CO.,LTD., is therefore critical for the uninterrupted progression of research and manufacturing projects.

The synthesis and application of 2-Fluoroanisole highlight its significance in modern chemistry. As industries continue to innovate and demand specialized chemical compounds, intermediates like 2-Fluoroanisole remain indispensable. Its consistent quality and availability are key factors for success in chemical research and industrial production, supporting the development of new technologies and products that benefit society.

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