1,2,3-1H-Triazole CAS 288-36-8: A Key Pharmaceutical Intermediate
Unlock advancements in antibiotics and drug discovery with this essential heterocyclic compound.
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1H-1,2,3-Triazole
This critical 1,2,3-1H-Triazole compound, identified by CAS 288-36-8, is a fundamental building block in the synthesis of vital pharmaceuticals, most notably as a precursor to tazobactam, which is crucial for enhancing the efficacy of beta-lactam antibiotics. Its robust chemical structure and high purity (typically ≥99%) make it indispensable for researchers and manufacturers in the pharmaceutical sector. Beyond its direct role in drug synthesis, it serves as a versatile tool in medicinal chemistry and proteomics research, functioning as a bioisostere and a foundation for creating more complex molecular structures, thereby supporting innovation in drug development.
- Explore the role of 1,2,3-1H-Triazole in antibiotic synthesis, a crucial application for developing enhanced antibacterial treatments.
- Discover how 1H-1,2,3-Triazole functions as a bioisostere in medicinal chemistry, facilitating the design of novel therapeutic agents.
- Learn about the stability and purity of 1,2,3-1H-Triazole, ensuring reliable performance in complex chemical reactions.
- Understand the importance of sourcing high-quality 1,2,3-1H-Triazole for R&D and large-scale pharmaceutical manufacturing.
Advantages and Applications
Enhanced Antibiotic Efficacy
As a key intermediate for tazobactam, 1H-1,2,3-Triazole directly contributes to antibiotics with a broadened spectrum, fighting a wider range of bacterial infections.
Versatile Research Tool
Its utility as a bioisostere and building block makes 1,2,3-1H-Triazole invaluable for scientists in medicinal chemistry and proteomics research, driving innovation in drug design.
Chemical Stability and Purity
With high purity specifications and a stable heterocyclic structure, this compound ensures reliable and consistent results in demanding chemical synthesis processes.
Key Applications
Pharmaceutical Synthesis
A critical intermediate in the production of tazobactam, enhancing the effectiveness of antibiotics.
Medicinal Chemistry
Used as a bioisostere for imidazoles and carboxylic acid derivatives in drug discovery and development.
Proteomics Research
Serves as a building block for more complex chemical compounds, aiding in scientific research.
Chemical Synthesis
A versatile heterocyclic compound employed in various organic synthesis pathways for complex molecules.