2-Bromo-6,7-dihydrothiazolo[5,4-c]pyridin-4(5H)-one: A Key Heterocyclic Intermediate
Discover the synthesis, properties, and applications of this vital chemical building block.
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2-Bromo-6,7-dihydrothiazolo[5,4-c]pyridin-4(5H)-one
This compound serves as a crucial intermediate in the synthesis of various complex organic molecules, particularly within the pharmaceutical and chemical research sectors. Its unique heterocyclic structure, featuring a bromine atom, makes it a valuable building block for developing novel compounds.
- Unlock new research avenues with this essential heterocyclic intermediate, crucial for advancing your organic synthesis projects.
- Benefit from high purity levels, ensuring reliable and reproducible results in your chemical reactions.
- Explore diverse applications as a building block in the development of pharmaceuticals and other fine chemicals.
- Source efficiently with our global network of trusted suppliers for this critical CAS 1035219-96-5 compound.
Key Advantages
Versatile Building Block
This compound's structure makes it an ideal starting material for creating more complex molecules, supporting your bespoke organic synthesis needs.
Quality Assurance
We emphasize high purity standards to guarantee the efficacy and consistency of this chemical reagent in your laboratory applications.
Reliable Sourcing
Access this vital heterocyclic compound through our network of reputable manufacturers and suppliers, ensuring availability and competitive pricing.
Key Applications
Pharmaceutical Synthesis
Utilize this compound as a key intermediate in the development of active pharmaceutical ingredients (APIs) and novel drug candidates.
Chemical Research
Employ this versatile building block in academic and industrial research for exploring new chemical transformations and discovering novel compounds.
Material Science
Investigate its potential use in advanced materials development, leveraging its unique structural properties.
Custom Synthesis Projects
Integrate this compound into custom synthesis workflows, benefiting from its specific reactivity and structural features.