Diethyl 5-amino-3-methylthiophene-2,4-dicarboxylate
CAS 4815-30-9
CAS · 4815-30-9
Product Overview
Diethyl 5-amino-3-methylthiophene-2,4-dicarboxylate is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Characteristics: | Light yellow solid |
|---|---|
| Content: | 98% min |
Applications
1. Pharmaceutical Intermediate
This compound is commonly used in the synthesis of drug candidates, especially:
Antibacterial and antifungal agents
Anti-inflammatory compounds
CNS-active molecules
Its amino and ester functionalities offer ideal reaction sites for medicinal chemistry transformations.
2. Agrochemical Research
It serves as a building block in the design of bioactive compounds for use in pesticides, herbicides, or plant growth regulators due to its thiophene core, which is bioisosteric to other aromatic systems.
3. Heterocyclic Chemistry
It is a valuable scaffold in heterocyclic compound synthesis, particularly in creating fused ring systems or as a precursor in multistep synthetic pathways.
4. Material Science
Though less common, derivatives of this compound may be explored for optoelectronic or polymer material applications due to the electronic properties of thiophene rings.
Benefits
Chemical Versatility: The presence of multiple functional groups (amino, ester, methyl) allows for a wide variety of chemical modifications.
Thiophene Scaffold: Known for its stability and bioactivity-enhancing properties, thiophene is a favored structure in both pharmaceuticals and agrochemicals.
Efficient Synthesis Pathways: Easily introduced into multicomponent reactions and combinatorial synthesis.
Bioactivity Potential: Useful in designing molecules with high potential for biological activity and selectivity.
Conclusion
Diethyl 5-amino-3-methylthiophene-2,4-dicarboxylate (CAS 4815-30-9) is a valuable synthetic intermediate in both pharmaceutical and agrochemical research. Its reactive functional groups and bioactive thiophene core make it ideal for creating structurally diverse compounds with potential therapeutic or agricultural uses. Its role in heterocyclic and medicinal chemistry continues to make it a compound of choice for researchers seeking novel and effective bioactive molecules.
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