High-Purity (S)-2-Amino-2-(2-chlorophenyl)acetic Acid for Advanced Drug Synthesis
Unlock the potential of your antithrombotic drug development with this critical pharmaceutical intermediate.
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2-Amino-2-(2-chlorophenyl)acetic acid
This high-quality chemical serves as a vital intermediate in the synthesis of clopidogrel, a critical antithrombotic drug. Its precise chiral structure and high purity ensure the efficacy and safety of the final pharmaceutical product. We offer reliable supply for your advanced drug synthesis needs.
- Leverage our expertise in chiral synthesis to obtain high purity s-2-amino-2-(2-chlorophenyl)acetic acid intermediate for your clopidogrel synthesis projects.
- This pharmaceutical intermediate, with CAS: 141315-50-6, is essential for developing effective antithrombotic drugs.
- Benefit from our commitment to quality with a guaranteed purity of 95%min for this specialty chemical.
- Ensure reliable sourcing for your pharmaceutical R&D chemicals with our consistent supply of this key precursor.
Advantages You Gain
Uncompromised Purity
Achieve superior drug efficacy by utilizing our 2-amino-2-(2-chlorophenyl)acetic acid with a minimum purity of 95%, crucial for precise clopidogrel synthesis.
Reliable Supply Chain
Secure your production with a stable supply of this pharmaceutical intermediate, supporting your ongoing drug manufacturing needs.
Chiral Specificity
Our product's defined chirality is paramount for the stereoselective synthesis required in modern pharmaceutical development, particularly for antithrombotic agents.
Key Applications
Antithrombotic Drug Synthesis
This chemical intermediate is indispensable for the synthesis of clopidogrel, a widely used medication to prevent blood clots.
Pharmaceutical R&D
Researchers rely on this chiral amino acid derivative for developing new therapeutic agents and understanding drug mechanisms.
Custom Chemical Synthesis
Its unique structure makes it a valuable building block for custom synthesis projects in the fine chemical sector.
Advanced Organic Chemistry
Serves as a key component in complex organic synthesis pathways, contributing to the creation of novel chemical entities.