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Product Line: Pharmaceutical Chemicals

1-Aminotetralin, (S)-

CAS 23357-52-0

Molecular structure of 1-Aminotetralin, (S)-

CAS · 23357-52-0

01

Product Overview

1-Aminotetralin, (S)- is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Colorless or light yellow transparent liquid
Purity 99.0% min
Optical Purity (e.e.) 99.0% min
Water 0.2% max
03

Applications

In terms of applications, it is primarily used as an intermediate in the synthesis of pharmaceuticals and bioactive compounds. Its structure, containing both an amine group and a bicyclic tetralin ring, makes it valuable for constructing more complex molecules, including neurotransmitter analogs, central nervous system agents, and receptor ligands. It is also employed in chemical research for studying enantioselective reactions, asymmetric synthesis, and chiral catalysts, due to its (S)-enantiomeric form. Additionally, it may serve as a building block in the preparation of dyes, agrochemicals, and other fine chemicals where stereochemistry is critical.

04

Benefits

The benefits of 1-Aminotetralin, (S)- lie in its high enantiomeric purity and versatility as a chemical intermediate. Its specific stereochemistry allows for the development of drugs and compounds with predictable pharmacological activity and minimal undesired side effects. The presence of the amine group provides reactive sites for derivatization, enabling diverse chemical modifications while maintaining the integrity of the bicyclic system. Its use in asymmetric synthesis and as a precursor for biologically active molecules can enhance efficiency and selectivity in chemical manufacturing. Furthermore, it contributes to research in medicinal chemistry by enabling the design and testing of chiral compounds with potential therapeutic benefits.

05

Conclusion

In conclusion, 1-Aminotetralin, (S)- is a highly useful intermediate in both pharmaceutical and chemical research. Its applications in synthesizing bioactive molecules, chiral catalysts, and fine chemicals, combined with the benefits of stereochemical purity and chemical versatility, make it an important tool for developing therapeutics and advancing chemical methodologies. Its continued use supports innovation in drug development and the creation of specialized chemical compounds.

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