4-Chloro-5-iodopyrimidine: A Crucial Pharmaceutical Intermediate
Discover the key properties and applications of this vital chemical building block for drug discovery.
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4-Chloro-5-iodopyrimidine
4-Chloro-5-iodopyrimidine (CAS: 63558-65-6) stands as a pivotal pharmaceutical intermediate and a valuable chemical building block for organic synthesis. Its specific chemical structure makes it indispensable in the development of novel therapeutic agents and in various medicinal chemistry research programs. Understanding its properties is key to leveraging its potential in advanced chemical synthesis.
- Explore the synthesis of 4-Chloro-5-iodopyrimidine for advanced organic synthesis, ensuring a reliable supply of this critical intermediate.
- Investigate the diverse applications of pyrimidine derivatives in pharmaceuticals, highlighting their role in creating new drug candidates.
- Utilize high purity chemical intermediates like 4-Chloro-5-iodopyrimidine, essential for reproducible and successful research outcomes.
- Discover the benefits of using 4-Chloro-5-iodopyrimidine as a chemical building block for drug discovery, accelerating the development of innovative treatments.
Advantages Provided by the Product
High Purity and Reliability
With a guaranteed purity of 97%, 4-Chloro-5-iodopyrimidine ensures consistent results in complex organic synthesis reactions, making it a trusted choice for demanding research and development projects.
Versatile Building Block
As a key heterocyclic compound, its unique chemical structure offers a wide range of possibilities for chemists working on novel drug candidates and complex molecular architectures.
Strategic Storage Recommendations
Proper handling and storage conditions, such as keeping in a dark place, under an inert atmosphere, and at -20°C, are crucial for maintaining the integrity and reactivity of this specialty chemical for optimal performance.
Key Applications
Pharmaceutical Synthesis
This compound serves as a critical precursor in the synthesis of various pharmaceutical agents, leveraging its reactive sites for complex molecular construction.
Medicinal Chemistry Research
Its role as a versatile building block makes it invaluable for researchers exploring new chemical entities with potential therapeutic benefits in drug discovery programs.
Organic Synthesis Intermediate
Chemists utilize this fine chemical in a wide array of organic transformations, contributing to the creation of diverse and complex organic molecules.
Development of Novel Compounds
The inherent structure of this pyrimidine derivative makes it a target for developing novel compounds with unique properties and applications in various scientific fields.
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