Explore (S)-(-)-1,1,2-Triphenylethane-1,2-diol: A Vital Intermediate
Discover the essential role of this chiral compound in advanced chemical synthesis and pharmaceutical development.
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(S)-(-)-1,1,2-Triphenylethane-1,2-diol
This chiral diol, identified by CAS 108998-83-0, serves as a critical component in the sophisticated process of pharmaceutical intermediate synthesis. Its unique stereochemistry makes it invaluable for creating complex molecules with specific biological activities.
- Discover the utility of (S)-1,1,2-Triphenylethane-1,2-diol in producing advanced pharmaceutical intermediates, leveraging its chiral properties for precise molecular construction.
- Understand the key fine chemical intermediate properties that make this compound a sought-after building block in organic synthesis.
- Learn about the stability and handling requirements for (S)-(-)-1,1,2-Triphenylethane-1,2-diol, ensuring its efficacy in your processes.
- Explore the applications of this specialty chemical, a testament to its versatility in modern chemical manufacturing.
Key Advantages
Chiral Purity for Targeted Synthesis
Benefit from the high chiral purity of (S)-(-)-1,1,2-Triphenylethane-1,2-diol, essential for stereoselective synthesis in pharmaceutical applications, driving efficiency in your production.
Versatile Organic Building Block
Utilize this compound as a versatile organic building block, enabling diverse reaction pathways and the creation of a wide array of complex organic molecules.
Reliable Intermediate for Fine Chemicals
Rely on the consistent quality and properties of (S)-(-)-1,1,2-Triphenylethane-1,2-diol as a dependable intermediate for your fine chemical manufacturing needs.
Key Applications
Pharmaceutical Synthesis
As a crucial pharmaceutical intermediate, it plays a vital role in the synthesis of active pharmaceutical ingredients (APIs), contributing to the development of new medicines.
Fine Chemical Manufacturing
Its use as a fine chemical intermediate allows for the precise construction of specialized chemicals for various industries, demanding high purity and specific structures.
Organic Synthesis Research
Researchers leverage this chiral diol in advanced organic synthesis, exploring new reaction methodologies and creating novel molecular architectures.
Chiral Building Blocks
The inherent chirality makes it an excellent chiral building block for creating enantiomerically pure compounds, essential in many advanced chemical products.
Related Technical Articles & Resources
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