2-Bromo-5-formylthiazole: Your Key Intermediate for Advanced Organic Synthesis and Research

Discover the versatility and critical role of 2-Bromo-5-formylthiazole (CAS 464192-28-7) as a high-purity organic intermediate. Essential for pharmaceutical and agrochemical development, this thiazole derivative is a cornerstone for chemical researchers seeking reliable building blocks.

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Advantages of the Product

High Purity and Reliability

Benefit from a chemical research compound with purity ≥98%, ensuring consistent and reproducible results in your most demanding applications, supporting your efforts in the synthesis of specialty chemicals.

Versatile Synthetic Applications

As a key 2-bromo-5-formylthiazole organic synthesis intermediate, it opens doors to a vast array of chemical transformations, crucial for developing novel pharmaceuticals and agrochemicals.

Facilitates Scientific Discovery

This thiazole derivative is instrumental in advancing chemistry and biological sciences research, offering a reliable pathway to new organic compounds and potential therapeutic agents.

Key Applications

Pharmaceutical Synthesis

As a pharmaceutical building block with CAS 464192-28-7, this compound is integral to the synthesis of active pharmaceutical ingredients (APIs) and complex drug molecules.

Agrochemical Development

Its utility as an intermediate extends to the agrochemical sector, where it aids in the creation of new pesticides, herbicides, and other crop protection agents.

Chemical Research

This chemical research compound is widely employed in academic and industrial labs for exploring new reaction pathways and synthesizing novel materials.

Specialty Chemicals

The versatility of 2-bromo-5-formylthiazole makes it an excellent choice for the synthesis of various specialty chemicals with unique properties and applications.