Exploring the Chemical Properties of 5-Bromo-2-methylphenol (CAS 36138-76-8)
The foundation of any successful chemical synthesis lies in a thorough understanding of the properties of the constituent molecules. 5-Bromo-2-methylphenol, identified by its CAS number 36138-76-8, is a compound that offers a fascinating blend of reactivity and specificity, making it a valuable asset in the field of chemistry. This article aims to explore the key chemical properties of this compound and its implications for various industrial applications.
The physical appearance of 5-Bromo-2-methylphenol as a pink powder is a notable characteristic that aids in its identification and handling. This visual cue, combined with its high purity of 99.7%, signals a compound manufactured to exacting standards, suitable for demanding research and development projects. The presence of the bromine atom and the hydroxyl group on the methylphenol ring confers specific reactivity, allowing it to participate in a range of organic reactions. Understanding these chemical properties is crucial for chemists seeking to leverage this intermediate in custom synthesis or to purchase it for specialized manufacturing processes.
As a key chemical intermediate in organic synthesis, the reactivity of 5-Bromo-2-methylphenol is central to its utility. The bromine atom, being an electronegative substituent, influences the electron density of the aromatic ring, making it amenable to nucleophilic substitution reactions under certain conditions. Conversely, the hydroxyl group can undergo reactions typical of phenols, such as esterification or etherification. This dual functionality makes it a versatile building block. The information associated with CAS 36138-76-8 provides chemists with a roadmap for its potential transformations, guiding efforts in creating novel materials or active compounds.
The significance of 5-Bromo-2-methylphenol extends to the pharmaceutical industry, where it serves as a critical intermediate. The synthesis of many drug molecules involves intricate pathways that rely on precise chemical modifications. By providing a pre-functionalized aromatic core, this compound helps to shorten synthetic routes and improve overall efficiency. For researchers and companies looking to procure this material, the availability from reliable suppliers like NINGBO INNO PHARMCHEM CO.,LTD. ensures a consistent supply chain. The price of such intermediates is a key consideration for large-scale production planning.
Furthermore, in the realm of fine chemicals, the specific properties of 5-Bromo-2-methylphenol are harnessed to create high-value products. Its structure allows for the precise introduction of bromine and hydroxyl functionalities into larger molecules, which can impart unique characteristics such as enhanced stability, specific optical properties, or improved biological activity. The consistent quality of this compound, as indicated by its high purity, is vital for meeting the stringent requirements of the fine chemical market. The ability to buy this chemical intermediate is essential for driving innovation in these sectors.
In summary, the chemical properties of 5-Bromo-2-methylphenol, encompassing its physical state, purity, and inherent reactivity, establish it as a significant compound in modern chemistry. Its utility as a chemical intermediate in organic synthesis, particularly for pharmaceutical and fine chemical applications, highlights its value. A thorough understanding of its chemical profile, coupled with access to high-quality sources, empowers chemists to unlock its full potential.
Perspectives & Insights
Molecule Vision 7
“Its structure allows for the precise introduction of bromine and hydroxyl functionalities into larger molecules, which can impart unique characteristics such as enhanced stability, specific optical properties, or improved biological activity.”
Alpha Origin 24
“The consistent quality of this compound, as indicated by its high purity, is vital for meeting the stringent requirements of the fine chemical market.”
Future Analyst X
“The ability to buy this chemical intermediate is essential for driving innovation in these sectors.”