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Understanding the Properties of 4-tert-Butyl-2,6-dinitrophenol for Synthesis

For chemists and chemical engineers, a deep understanding of the properties of raw materials is fundamental to successful synthesis. 4-tert-Butyl-2,6-dinitrophenol (CAS 4097-49-8) is a chemical intermediate whose specific characteristics dictate its utility in various reactions. As a leading manufacturer and supplier in China, we aim to provide comprehensive information about this compound to our B2B clients, empowering them to make informed decisions when they plan to buy 4-tert-Butyl-2,6-dinitrophenol.

Physically, 4-tert-Butyl-2,6-dinitrophenol is typically described as a yellowish solid. This physical state is common for many aromatic nitro compounds. Its melting point, reported to be in the range of 93-96°C, is a critical parameter for determining appropriate handling and reaction conditions. Understanding this melting point is essential for process design, particularly when considering reactions that involve heating or dissolution.

The molecular formula of the compound is C10H12N2O5, and its molecular weight is approximately 240.21 g/mol. These fundamental properties are important for stoichiometric calculations in synthesis. The presence of two nitro groups (-NO2) on the phenolic ring significantly influences its chemical reactivity. These electron-withdrawing groups activate the aromatic ring towards certain reactions while also imparting specific characteristics related to acidity and potential for reduction.

The tert-butyl group (-C(CH3)3) provides steric hindrance and lipophilicity, which can affect the compound's solubility and its interaction in reaction mixtures. While solubility data can vary, it is generally soluble in organic solvents, a common trait for such organic molecules, which is advantageous for reactions conducted in organic media. This solubility profile is crucial when considering it as pesticide synthesis raw material or within pharmaceutical synthetic routes.

Safety information is also a critical aspect to consider. Associated hazard statements (e.g., H301, H311, H331) indicate toxicity, requiring careful handling with appropriate personal protective equipment (PPE) and ventilation. As a responsible supplier, we provide detailed Safety Data Sheets (SDS) to all our customers, ensuring they are aware of and can mitigate any risks associated with handling 4-tert-Butyl-2,6-dinitrophenol.

For those involved in the synthesis of dyes or complex organic molecules, understanding these properties allows for optimized reaction pathways. The quality of the intermediate directly impacts the efficiency and purity of the final product. Therefore, sourcing from a trusted manufacturer that guarantees high purity, such as our facility in China, is paramount for consistent results and competitive 4-tert-Butyl-2,6-dinitrophenol price.

In conclusion, mastering the properties of 4-tert-Butyl-2,6-dinitrophenol—from its physical appearance and melting point to its chemical structure and safety considerations—is key for successful application in various synthetic processes. Rely on our expertise and high-quality product offerings to support your chemical manufacturing needs.

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