High Purity Imidazole 288-32-4: Versatile Pharmaceutical Intermediate & Curing Agent

Unlock the potential of your formulations with high-purity Imidazole 288-32-4, a crucial building block for innovative pharmaceutical applications and advanced epoxy resin systems. Discover its versatility for your next chemical project.

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Product Advantages and Benefits

Superior Purity & Consistency

Our Imidazole 288-32-4 boasts a high purity (≥99.0%) and a stable melting point (87.0-91.0°C), which is essential for manufacturing sensitive pharmaceutical compounds and ensures reliable performance in every batch.

Broad Application Spectrum

This versatile chemical intermediate finds extensive use from imidazole antifungal drug synthesis to its critical function as an epoxy resin curing agent, making it highly sought after in diverse industries.

Reliable Performance for Formulators

With a low water content (≤0.5%) and consistent white crystalline appearance, Imidazole 288-32-4 offers excellent physical characteristics, simplifying integration into your formulations for a variety of applications.

Key Applications

Pharmaceutical Synthesis

Imidazole is a fundamental building block in the development and production of a wide range of pharmaceutical compounds, notably antifungal agents like miconazole and clotrimazole, making it a key pharmaceutical intermediate.

Epoxy Resin Curing

Utilized as a highly effective curing agent, Imidazole accelerates the hardening process of epoxy resins, contributing to durable coatings, adhesives, and composite materials, crucial for industrial applications.

Preservative & Agrochemical Production

Its unique properties make it an important ingredient in various preservative formulations, and it also serves as a critical precursor in the synthesis of certain agrochemicals, expanding its market presence.

Research & Development

As a versatile chemical compound, Imidazole 288-32-4 is frequently employed in academic and industrial research for synthesizing novel organic molecules and exploring new chemical pathways across various disciplines.