Unlock Pharmaceutical Potential with CAS 33671-37-3
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5-(o-Chlorophenyl)-7-ethyl-1,3-dihydro-2H-thieno(2,3-e)(1,4)diazepin-2-one
This high-purity chemical intermediate, identified by CAS 33671-37-3, is a crucial component in advanced pharmaceutical research and synthesis. Its consistent quality and reliable supply chain make it an indispensable material for developing innovative therapies.
- Discover the power of high purity fine chemical compounds for your research needs.
- Leverage CAS 33671-37-3 as a key pharmaceutical intermediate in complex syntheses.
- Ensure reliable chemical synthesis through our trusted supply of intermediates.
- Advance your chemical synthesis projects with our carefully sourced chemical intermediates.
Product Advantages
Exceptional Purity
Our commitment to quality ensures a purity of u226599% for CAS 33671-37-3, critical for sensitive pharmaceutical research and development, helping to achieve reliable chemical synthesis outcomes.
Versatile Intermediate
This compound serves as a vital pharmaceutical intermediate, enabling complex chemical synthesis pathways for a wide range of active pharmaceutical ingredients, supporting advanced pharmaceutical research.
Reliable Supply Chain
We provide a stable and dependable supply of this essential chemical intermediate, ensuring your R&D projects and production timelines are consistently met, reinforcing our role as a trusted chemical intermediates supplier.
Key Applications
API Synthesis
Utilized as a key building block in the synthesis of active pharmaceutical ingredients (APIs), making it a cornerstone for pharmaceutical research.
Chemical Research
An essential reagent for scientific research and development in organic chemistry and medicinal chemistry, facilitating novel compound discovery.
Intermediate Manufacturing
Serves as a critical intermediate in the manufacturing processes of various fine chemicals, supporting the broader chemical industry.
Drug Discovery
A valuable tool in the drug discovery pipeline, aiding in the creation of new therapeutic agents through precise chemical synthesis.