(1R,2R)-1,2-Cyclohexanedicarboxylic Acid: Your Crucial Pharmaceutical Intermediate
Unlock advanced pharmaceutical synthesis with this high-purity chiral building block.
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(1R,2R)-1,2-Cyclohexanedicarboxylic Acid
This compound, identified by CAS 46022-05-3, is a critical chiral intermediate essential for the synthesis of complex pharmaceutical compounds, most notably Lurasidone, an important antipsychotic medication. Its high purity and specific stereochemistry make it indispensable for targeted drug development and manufacturing.
- Discover the critical role of (1R,2R)-1,2-cyclohexanedicarboxylic acid suppliers in ensuring consistent quality for your pharmaceutical production needs.
- Explore advanced organic synthesis building blocks like this, vital for creating next-generation therapeutics.
- Learn about the benefits of using high purity cyclohexanedicarboxylic acid in optimizing your chemical synthesis yields and product efficacy.
- Understand the precise chemical properties and handling of CAS 46022-05-3 to integrate it seamlessly into your R&D and manufacturing workflows.
Key Advantages
Stereochemical Purity
The precise stereochemistry of (1R,2R)-1,2-cyclohexanedicarboxylic acid is paramount for achieving the desired biological activity in pharmaceutical end-products, making it a preferred chiral building block for drug synthesis.
Lurasidone Synthesis
As a key component in the lurasidone intermediate synthesis, this compound directly contributes to the production of essential medications for mental health conditions, highlighting its pharmaceutical significance.
Versatile Chemical Intermediate
Beyond Lurasidone, its well-defined structure and reactivity make it a versatile intermediate for various complex organic synthesis projects in fine chemical industries.
Key Applications
Pharmaceutical Intermediate
Critical in the multi-step synthesis of Lurasidone and potentially other CNS-active pharmaceuticals, ensuring the correct stereochemistry for drug efficacy.
Chiral Synthesis
Serves as a foundational chiral building block, enabling stereoselective transformations in the synthesis of enantiomerically pure compounds.
Research & Development
Valuable for academic and industrial research labs exploring new synthetic routes and novel chemical entities requiring specific dicarboxylic acid functionalities.
Fine Chemical Manufacturing
Used in the production of specialized fine chemicals where precise molecular structure and purity are essential quality parameters.
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