2-Bromobenzamide: Synthesis, Properties, and Applications in Organic Chemistry
Explore the versatile uses of this crucial organic intermediate in advanced chemical synthesis.
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2-Bromobenzamide
2-Bromobenzamide (CAS: 4001-73-4) is a vital compound in the field of organic chemistry, serving as a crucial building block for various complex molecules. Its chemical structure and reactivity make it indispensable for researchers and manufacturers alike.
- Understanding the 2-bromobenzamide synthesis pathways provides insights into efficient chemical manufacturing processes.
- The distinct 2-bromobenzamide properties, including its melting point and solubility, are key to its successful application.
- Exploring 2-bromobenzamide applications reveals its significance in creating novel compounds for diverse industries.
- Sourcing high-quality CAS 4001-73-4 for your research ensures reliable and reproducible results in your experiments.
Advantages of Using 2-Bromobenzamide
Versatile Reactivity
The presence of both a bromine atom and an amide group on the benzene ring offers a wide array of chemical transformations, facilitating complex organic synthesis.
Key Building Block
As a key building block, it is instrumental in the 2-bromobenzamide synthesis of advanced materials and active pharmaceutical ingredients.
Facilitates Advanced Synthesis
Its utility in palladium-catalyzed synthesis of phenanthridinones highlights its importance in modern synthetic methodologies.
Key Applications
Substituted Isoindolin-1-ones
2-Bromobenzamide is utilized in microwave-assisted one-pot synthesis to create a variety of substituted 3-(phenylmethylene)isoindolin-1-ones, demonstrating its role in efficient synthesis strategies.
Phenanthridinones Synthesis
The compound plays a role in palladium-catalyzed reactions for the synthesis of phenanthridinones, a class of compounds with significant biological activities.
Iminophosphorane Ligands
Researchers employ 2-bromobenzamide in the development of novel water-soluble iminophosphorane ligands, advancing the field of coordination chemistry.
Pharmaceutical Intermediates
Its broad applicability makes CAS 4001-73-4 a valuable pharmaceutical intermediate, contributing to the development of new drug candidates.