High Purity Ethyl 2-Mercapto-1H-Imidazole-4-Carboxylate: A Versatile Pharmaceutical Intermediate
Unlock advanced organic synthesis with our premium 4-Ethoxycarbonylimidazole-2-thiol, essential for your next breakthrough.
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Ethyl 2-Mercapto-1H-Imidazole-4-Carboxylate
This high-purity (99%) imidazole derivative, known by CAS number 64038-64-8, serves as a pivotal building block in the synthesis of complex organic molecules. Its unique sulfur-containing heterocyclic structure makes it invaluable for various chemical research and development applications, particularly within the pharmaceutical industry.
- Explore the synthesis of crucial enzyme inhibitors using this key 4-ethoxycarbonylimidazole-2-thiol intermediate.
- Leverage the potential of CAS 64038-64-8 in organic synthesis to create novel pharmaceutical agents.
- Benefit from the high purity (99%) of this imidazole carboxylate intermediate for reliable research outcomes.
- Discover the utility of imidazole-2-thiol derivatives in advancing medicinal chemistry and drug discovery processes.
Product Advantages
Versatile Intermediate
As a fundamental building block, this 4-ethoxycarbonylimidazole-2-thiol is critical for a wide range of organic synthesis projects, enabling the creation of diverse chemical structures.
Pharmaceutical Applications
Its primary use as a pharmaceutical intermediate supports the development of new drugs, especially those targeting enzyme inhibitors, making it vital for medicinal chemistry research.
High Quality Assurance
Adherence to quality management systems like ISO9001 and GMP ensures the reliability and consistency of this imidazole carboxylate intermediate for your critical applications.
Key Applications
Pharmaceutical Synthesis
Utilize this compound as a key intermediate for synthesizing complex APIs, including enzyme inhibitors and receptor modulators, leveraging its unique imidazole structure.
Organic Chemistry Research
In organic synthesis, this sulfur-containing heterocycle provides a versatile platform for creating novel compounds and exploring new reaction pathways.
Materials Science
The inherent properties of sulfur-containing moieties allow this intermediate to be a precursor for advanced materials, such as conductive polymers.
Medicinal Chemistry
As a core building block, it aids in the design and synthesis of potential antimicrobial and antiviral agents, advancing drug discovery efforts.
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