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4-Phenylthiazole

Updated: 2026-07-15

Overview

4-Phenylthiazole is an aromatic heterocyclic compound featuring a thiazole ring substituted with a phenyl group at the 4-position. It is widely utilized in organic synthesis, particularly as a building block for pharmaceuticals and agrochemicals. The compound's stability and reactivity make it valuable for constructing complex molecular structures. The demand for 4-phenylthiazole has grown due to its role in synthesizing bioactive molecules, including potential drug candidates. Its synthesis typically involves cyclization reactions or modifications of pre-existing thiazole derivatives. Industrial-scale production requires stringent quality control to ensure consistency in purity and performance.

Physical and Chemical Properties

4-Phenylthiazole appears as a white to light yellow crystalline powder with a melting point of approximately 50-52°C. It is soluble in common organic solvents such as ethanol, ether, and chloroform but exhibits limited solubility in water. The compound's molecular weight is 161.22 g/mol, and its structure combines the electron-rich thiazole ring with the aromatic phenyl group, influencing its reactivity. The thiazole ring's nitrogen and sulfur atoms contribute to its polarity, making it a versatile intermediate in nucleophilic and electrophilic reactions. Its stability under standard conditions allows for long-term storage when protected from moisture and light. Spectroscopic methods like NMR and IR are commonly used for characterization.

Main Applications

4-Phenylthiazole serves as a key intermediate in pharmaceutical research, particularly for developing antimicrobial, antiviral, and anticancer agents. Its structural motif is found in several biologically active compounds, enhancing their efficacy and specificity. The agrochemical industry also employs it in synthesizing pesticides and herbicides. In organic chemistry, 4-phenylthiazole acts as a ligand in catalysis and a precursor for fluorescent dyes. Its ability to form stable complexes with metals expands its utility in material science. Researchers continue to explore its potential in designing novel functional materials and drug delivery systems.

Safety and Storage

Handling 4-phenylthiazole requires adherence to safety protocols to minimize exposure risks. It may cause irritation to the skin, eyes, and respiratory tract upon contact or inhalation. Laboratory personnel should use gloves, goggles, and fume hoods during manipulation. In case of accidental exposure, rinse affected areas with water and seek medical attention. Storage recommendations include keeping the compound in a tightly sealed container under cool, dry conditions, away from incompatible substances like strong oxidizers. Proper labeling and hazard communication are essential for workplace safety. Disposal should comply with local regulations for hazardous organic waste.

B2B Procurement Guide

When procuring 4-phenylthiazole, buyers should prioritize suppliers with verified certifications (e.g., ISO, GMP) to ensure product quality. Specifications such as purity (typically ≥98%), CAS number, and batch analysis reports must be confirmed. Bulk purchases often reduce costs, but sample testing is advisable before large-scale transactions. Logistics considerations include selecting suppliers with reliable cold-chain options for temperature-sensitive shipments. Negotiating long-term contracts can stabilize pricing and supply continuity. Buyers should also assess the supplier's responsiveness and technical support for troubleshooting or custom synthesis requests.

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