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Catalog Number:
29509
CAS Number:
120990-85-4
N-(2-Azepanylmethyl)-N-ethylethanamine
Purity:
≥ 95% (NMR)
Documents
$141.41 /250MG
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Product Information

N-(2-Azepanylmethyl)-N-ethylethanamine is a versatile chemical compound known for its unique structural properties, making it an asset in various research and industrial applications. This compound, also recognized by its synonyms such as N-ethyl-N-(2-azepanylmethyl)ethanamine, exhibits significant potential in the development of pharmaceuticals, particularly in the synthesis of novel therapeutic agents. Its azepane ring structure contributes to its ability to interact with biological systems, which can be leveraged in drug design and development processes.

In addition to its pharmaceutical applications, N-(2-Azepanylmethyl)-N-ethylethanamine can serve as a valuable intermediate in the production of specialty chemicals and agrochemicals. Researchers and industry professionals can utilize this compound to enhance the efficacy of formulations, improve product stability, and explore new avenues in chemical synthesis. Its favorable properties, such as solubility and reactivity, position it as a preferred choice for innovative applications in both academic and commercial settings.

CAS Number
120990-85-4
Purity
≥ 95% (NMR)
Molecular Formula
C11H24N2
Molecular Weight
184.32
MDL Number
MFCD06653368
PubChem ID
4715268
Appearance
Yellow liquid
Conditions
Store at 0-8°C
General Information
CAS Number
120990-85-4
Purity
≥ 95% (NMR)
Molecular Formula
C11H24N2
Molecular Weight
184.32
MDL Number
MFCD06653368
PubChem ID
4715268
Appearance
Yellow liquid
Conditions
Store at 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N-(2-Azepanylmethyl)-N-ethylethanamine is widely utilized in research focused on:

  • Pharmaceutical Development: This compound serves as a key intermediate in the synthesis of various pharmaceuticals, particularly in the development of drugs targeting neurological disorders.
  • Chemical Synthesis: It is used in organic synthesis as a building block for creating more complex molecules, allowing chemists to streamline their processes and enhance efficiency.
  • Biochemical Research: Researchers utilize this compound to study receptor interactions and signaling pathways, providing insights that can lead to new therapeutic strategies.
  • Material Science: The compound finds applications in the development of specialty polymers and materials, contributing to advancements in coatings and adhesives.
  • Analytical Chemistry: It is employed as a standard in analytical methods, helping to ensure accuracy and reliability in quantitative analyses of related compounds.

Citations