2,6-Dichloroiodobenzene (CAS 19230-28-5): A Key Intermediate in Pharmaceutical Synthesis and Organic Chemistry
Unlock advanced synthesis possibilities with this crucial building block for your chemical innovations.
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2,6-Dichloroiodobenzene
This compound is a vital reactant in the synthesis of 3-(phenoxy-phenyl-methyl)-pyrrolidines, which act as potent and balanced norepinephrine and serotonin reuptake inhibitors. These compounds hold significant promise for developing treatments for neurological and psychiatric disorders.
- Utilize its potential as a chemical intermediate for pharmaceuticals, enabling the synthesis of targeted therapeutic agents.
- Leverage this organic synthesis building block for complex molecular construction in advanced research.
- Incorporate it into palladium-catalyzed cross-coupling reactions for efficient carbon-carbon bond formation.
- Explore its applications in aromatic substitution reactions to introduce diverse functional groups.
Key Advantages
Versatile Reactant
Serve as a crucial reactant in the synthesis of pharmacologically active pyrrolidine derivatives.
Synthetic Utility
Facilitate complex molecular architectures through its role in advanced organic synthesis, including various cross-coupling reactions.
Functionalization Capability
Enable targeted modifications via aromatic substitution reactions, allowing for tailored introduction of functional groups.
Key Applications
Pharmaceutical Synthesis
Crucial for creating compounds like 3-(phenoxy-phenyl-methyl)-pyrrolidines, which target norepinephrine and serotonin reuptake, vital for developing treatments for depression and anxiety.
Organic Chemistry Research
Serves as a versatile organic synthesis building block, enabling the creation of intricate molecular structures in academic and industrial research settings.
Agrochemical Development
Potentially used as a key intermediate in the synthesis of novel agrochemicals, contributing to advancements in crop protection and yield enhancement.
Specialty Chemical Production
Its unique halogenated structure makes it a valuable component in the production of various specialty chemicals requiring precise molecular design.