5-Chloropyrimidine-4,6-diol: A Versatile Building Block for Chemical Synthesis and Research

Discover the essential properties and applications of 5-Chloropyrimidine-4,6-diol, a vital heterocyclic compound for researchers and chemists worldwide. Explore its role in advancing chemical synthesis and material science.

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Advantages Offered

Versatile Heterocyclic Building Block

5-Chloropyrimidine-4,6-diol serves as a versatile heterocyclic compound, essential for constructing complex organic molecules. Its structure facilitates a wide range of chemical transformations, making it invaluable for developing novel compounds in diverse fields.

High Purity for Research Applications

With a typical purity exceeding 97%, this pyrimidine derivative ensures reliable and reproducible results in critical research and development activities, supporting advancements in chemical synthesis building blocks.

Key Intermediate in Complex Synthesis

As a key chemical intermediate, 5-Chloropyrimidine-4,6-diol plays a significant role in multi-step synthesis. Its reactivity and structural features enable chemists to efficiently build target molecules for pharmaceutical and material science applications.

Key Applications

Organic Synthesis

Utilize 5-Chloropyrimidine-4,6-diol in various organic synthesis reactions, a fundamental aspect of chemical synthesis building blocks and discovering new molecular entities.

Pharmaceutical Research

This heterocyclic compound is crucial for drug discovery efforts, serving as an intermediate in the synthesis of potential therapeutic agents, aligning with the search for new pharmaceutical intermediates.

Material Science

The unique properties of 5-Chloropyrimidine-4,6-diol make it suitable for developing advanced materials with specific functionalities, contributing to innovations in material science.

Chemical Intermediates

As a valuable chemical intermediate, it supports the efficient production of a wide range of fine chemicals, essential for various industrial and research purposes.