Pyrimidine-2-Boronic Acid Pinacol Ester CAS 937593-41-4: A Versatile Building Block for Organic Synthesis
Discover the key properties and applications of this essential intermediate for advanced chemical synthesis and pharmaceutical development.
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Pyrimidine-2-Boronic Acid Pinacol Ester
Pyrimidine-2-boronic acid pinacol ester, identified by CAS number 937593-41-4, is a crucial organic compound widely utilized as a building block in various chemical synthesis pathways. Its unique chemical structure makes it invaluable for creating complex molecules, particularly in the pharmaceutical industry for drug discovery and development. The compound's reliability and consistent quality are vital for researchers and manufacturers aiming for high yields and purity in their final products.
- Leverage pyrimidine-2-boronic acid pinacol ester synthesis to create novel pharmaceutical intermediates.
- Explore the chemical properties of CAS 937593-41-4, including its density and boiling point, to optimize reaction conditions.
- Source high-purity pyrimidine-2-boronic acid pinacol ester from reliable fine chemical suppliers for critical research applications.
- Understand the diverse pyrimidine boronic ester applications in Suzuki-Miyaura cross-coupling reactions and other advanced organic synthesis methodologies.
Key Advantages
Versatile Reactivity
As a boronic ester, this compound readily participates in cross-coupling reactions, making it a key component for constructing complex molecular architectures, supporting efficient organic synthesis.
Pharmaceutical Intermediate
Its pyrimidine core and boronic ester functionality make it an ideal building block for developing new drugs and pharmaceutical intermediates, accelerating drug discovery pipelines.
Reliable Quality
Sourced from reputable fine chemical suppliers, the compound ensures consistent purity and performance, crucial for reproducible experimental results in research and development, aligning with needs for buy pyrimidine-2-boronic acid pinacol ester.
Key Applications
Suzuki-Miyaura Coupling
A primary application involves its use in Suzuki-Miyaura cross-coupling reactions, a cornerstone for forming carbon-carbon bonds in the synthesis of complex organic molecules, demonstrating its value in organic synthesis building blocks.
Drug Discovery
Serves as a critical intermediate in the synthesis of potential drug candidates, aiding the development of new therapeutics and contributing to advancements in pharmaceutical intermediates boronic acid research.
Material Science
Can be employed in the development of advanced materials, leveraging its structural properties for specialized applications in electronics and polymer science.
Agrochemicals
Potential use in the synthesis of novel agrochemicals, contributing to the development of more effective and sustainable crop protection solutions.