Date published: 2025-12-4

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1-Methoxy-2-propylamine (CAS 37143-54-7)

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Alternate Names:
2-Amino-1-methoxypropane; 2-Methoxyisopropylamine
Application:
1-Methoxy-2-propylamine is a useful reagent for synthesis of heterocyclic compounds
CAS Number:
37143-54-7
Molecular Weight:
89.14
Molecular Formula:
C4H11NO
Supplemental Information:
This is classified as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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1-Methoxy-2-propylamine serves as a nucleophilic amine in diverse experimental applications. It acts as a reagent in organic synthesis, participating in nucleophilic substitution reactions to introduce the propylamine moiety into organic molecules. 1-Methoxy-2-Propylamine′s mechanism of action involves its ability to donate a lone pair of electrons to electrophilic carbon atoms, facilitating the formation of new chemical bonds. In this capacity, 1-Methoxy-2-propylamine plays a role in the modification of organic compounds, enabling the creation of new chemical entities with specific structural and functional properties. Its interaction at the molecular level involves the formation of covalent bonds with electrophilic substrates, leading to the generation of diverse chemical products.


1-Methoxy-2-propylamine (CAS 37143-54-7) References

  1. Optimization of piperazinebenzylamines with a N-(1-methoxy-2-propyl) side chain as potent and selective antagonists of the human melanocortin-4 receptor.  |  Pontillo, J., et al. 2005. Bioorg Med Chem Lett. 15: 4615-8. PMID: 16105734
  2. Probing molecular chirality by CD-sensitive dimeric metalloporphyrin hosts.  |  Berova, N., et al. 2009. Chem Commun (Camb). 5958-80. PMID: 19809616
  3. Non-Covalent Interactions in Molecular Systems: Thermodynamic Evaluation of the Hydrogen-Bond Strength in Amino-Ethers and Amino-Alcohols.  |  Siewert, R., et al. 2022. Chemistry. 28: e202200080. PMID: 35293642
  4. The Interaction in Electrolyte Additives Accelerates Ion Transport to Achieve High-Energy Non-Aqueous Lithium Metal Batteries.  |  Li, Z., et al. 2023. Small. e2301005. PMID: 37246249
  5. Hydroxylated Analogues of ATP-Sensitive Potassium Channel Openers Belonging to the Group of 6-and/or 7-Substituted 3-Isopropylamino-4 H-1, 2, 4-benzothiadiazine 1, 1-Dioxides: Toward an Improvement in Sulfonylurea Receptor 1 Selectivity and Metabolism Stability  |  De Tullio, P., Servais, A. C., Fillet, M., Gillotin, F., Somers, F., Chiap, P.,.. & Pirotte, B. 2011. Journal of medicinal chemistry. 54(24): 8353-8361.
  6. The effect of substrate structure on the chemoselectivity of Candida antarctica lipase B-catalyzed acylation of amino-alcohols  |  Le Joubioux, F., Henda, Y. B., Bridiau, N., Achour, O., Graber, M., & Maugard, T. 2013. Journal of Molecular Catalysis B: Enzymatic. 85: 193-199.
  7. Proton Shuttle Mechanism in the Transition State of Lipase‐Catalyzed N‐Acylation of Amino Alcohols  |  Syrén, P. O., Le Joubioux, F., Ben Henda, Y., Maugard, T., Hult, K., & Graber, M. 2013. ChemCatChem. 5(7): 1842-1853.
  8. Acetylation of (R, S)-propranolol catalyzed by Candida antarctica lipase B: An experimental and computational study.  |  Escorcia, A. M., Molina, D., Daza, M. C., & Doerr, M. 2013. Journal of Molecular Catalysis B: Enzymatic. 98: 21-29.
  9. The control of Novozym® 435 chemoselectivity and specificity by the solvents in acylation reactions of amino-alcohols  |  Le Joubioux, F., Bridiau, N., Henda, Y. B., Achour, O., Graber, M., & Maugard, T. 2013. Journal of Molecular Catalysis B: Enzymatic. 95: 99-110.
  10. Organic-conjugated polyanthraquinonylimide cathodes for rechargeable magnesium batteries  |  Ding, Y., Chen, D., Ren, X., Cao, Y., & Xu, F. 2022. Journal of Materials Chemistry A. 10(26): 14111-14120.
  11. Highly reversible Mg metal anodes enabled by interfacial liquid metal engineering for high-energy Mg-S batteries  |  Wei, C., Tan, L., Zhang, Y., Xi, B., Xiong, S., Feng, J., & Qian, Y. 2022. Energy Storage Materials. 48: 447-457.
  12. Emerging era of electrolyte solvation structure and interfacial model in batteries  |  Cheng, H., Sun, Q., Li, L., Zou, Y., Wang, Y., Cai, T.,.. & Ming, J. 2022. ACS Energy Letters. 7(1): 490-513.
  13. Polyanthraquinonyl sulfide cathodes for rechargeable magnesium batteries: Effect of structure on the performance  |  Ren, X., Wen, F., Cao, S., & Xu, F. 2023. Chemical Engineering Journal. 452: 139570.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

1-Methoxy-2-propylamine, 5 g

sc-253935
5 g
$168.00