2-methyl-2,7-diazaspiro[4.5]decane

95%

  • Product Code: 75323
  CAS:    1086395-66-5
Molecular Weight: 154.25 g./mol Molecular Formula: C₉H₁₈N₂
EC Number: MDL Number:
Melting Point: Boiling Point: 323.9±27.0℃ at 760 mmHg
Density: Storage Condition: 2-8°C, away from light, dry
Product Description: This chemical is primarily utilized in the field of medicinal chemistry and drug development. It serves as a key building block in the synthesis of various pharmaceutical compounds, particularly those targeting neurological and psychiatric disorders. The spirocyclic structure of the molecule provides a unique three-dimensional framework, which is advantageous in designing drugs with high specificity and potency. In addition to its role in drug development, it is also employed in research as a ligand or intermediate in organic synthesis. Its structural complexity allows for the exploration of novel chemical reactions and the creation of diverse molecular architectures. This makes it valuable in the discovery of new therapeutic agents and the optimization of existing ones. Furthermore, its applications extend to the study of biological pathways and receptor interactions, aiding in the understanding of disease mechanisms and the development of targeted treatments. Its versatility and stability make it a useful tool in both academic and industrial research settings.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.050 10-20 days €277.80
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0.250 10-20 days €972.55
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2-methyl-2,7-diazaspiro[4.5]decane
This chemical is primarily utilized in the field of medicinal chemistry and drug development. It serves as a key building block in the synthesis of various pharmaceutical compounds, particularly those targeting neurological and psychiatric disorders. The spirocyclic structure of the molecule provides a unique three-dimensional framework, which is advantageous in designing drugs with high specificity and potency. In addition to its role in drug development, it is also employed in research as a ligand or intermediate in organic synthesis. Its structural complexity allows for the exploration of novel chemical reactions and the creation of diverse molecular architectures. This makes it valuable in the discovery of new therapeutic agents and the optimization of existing ones. Furthermore, its applications extend to the study of biological pathways and receptor interactions, aiding in the understanding of disease mechanisms and the development of targeted treatments. Its versatility and stability make it a useful tool in both academic and industrial research settings.
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