Cas no 24298-17-7 (1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1))

1-Octanaminium, N,N-dioctyl-N-propyl-, bromide (1:1) is a quaternary ammonium compound characterized by its long alkyl chains, which contribute to its surfactant and antimicrobial properties. This cationic surfactant is notable for its stability and efficacy in formulations requiring bactericidal or fungicidal action. Its structure, featuring a positively charged nitrogen center and hydrophobic tails, enhances its ability to disrupt microbial cell membranes. The compound is often utilized in industrial, agricultural, and pharmaceutical applications where surface activity and disinfection are required. Its solubility in organic solvents and compatibility with various formulations make it a versatile choice for specialized chemical processes.
1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) structure
24298-17-7 structure
Product Name:1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1)
CAS No:24298-17-7
MF:C27H58BrN
MW:476.660128116608
CID:240556
PubChem ID:90449
Update Time:2025-11-07

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) Chemical and Physical Properties

Names and Identifiers

    • 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1)
    • trioctyl(propyl)azanium,bromide
    • Trioctylpropylammonium bromide
    • AC1L3K0F
    • AC1Q1R77
    • AR-1K2614
    • CTK4F3315
    • EINECS 246-136-6
    • n,n-dioctyl-n-propyloctan-1-aminium bromide
    • n-Propyl-tri-n-octylammoniumbromid
    • Tri-n-octyl-n-propyl-ammoniumbromid
    • trioctyl(propyl)ammonium bromide
    • Trioctylpropylammoniumbromid
    • A817199
    • NS00084557
    • 24298-17-7
    • trioctyl(propyl)azanium;bromide
    • trioctyl(propyl)azanium bromide
    • DTXSID20884900
    • FT-0638409
    • 1-Octanaminium, N,N-dioctyl-N-propyl-, bromide
    • 1-Octanaminium, N,N-dioctyl-N-propyl-, bromide (1:1)
    • SCHEMBL892744
    • Inchi: 1S/C27H58N.BrH/c1-5-9-12-15-18-21-25-28(24-8-4,26-22-19-16-13-10-6-2)27-23-20-17-14-11-7-3;/h5-27H2,1-4H3;1H/q+1;/p-1
    • InChI Key: PIVZYJMLIVYZJA-UHFFFAOYSA-M
    • SMILES: [Br-].[N+](CCC)(CCCCCCCC)(CCCCCCCC)CCCCCCCC

Computed Properties

  • Exact Mass: 475.37500
  • Monoisotopic Mass: 475.375
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 1
  • Heavy Atom Count: 29
  • Rotatable Bond Count: 23
  • Complexity: 245
  • Covalently-Bonded Unit Count: 2
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 0A^2
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing

Experimental Properties

  • Color/Form: Not available
  • Density: 1.0385 (rough estimate)
  • Melting Point: 74-77 °C
  • Boiling Point: °Cat760mmHg
  • Flash Point: °C
  • Refractive Index: 1.5260 (estimate)
  • PSA: 0.00000
  • LogP: 6.29870
  • Solubility: Not available

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) Security Information

  • Hazard Category Code: 36/37/38
  • Safety Instruction: 37/39-26
  • Hazardous Material Identification: Xi
  • Risk Phrases:R36/37/38

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) Customs Data

  • HS CODE:2827590000
  • Customs Data:

    China Customs Code:

    2923900090

    Overview:

    2923900090 Other quaternary ammonium salts and quaternary ammonium bases.Regulatory conditions:nothing.VAT:17.0%.Tax refund rate:9.0%.MFN tariff:6.5%.general tariff:30.0%

    Declaration elements:

    Product Name, component content, use to

    Summary:

    2923900090 other quaternary ammonium salts and hydroxides.Supervision conditions:None.VAT:17.0%.Tax rebate rate:9.0%.MFN tariff:6.5%.General tariff:30.0%

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) Pricemore >>

Related Categories No. Product Name Cas No. Purity Specification Price update time Inquiry
City Chemical
T1763-10GM
Trioctylpropylammonium Bromide
24298-17-7 MP72-75deg
10gm
$134.75 2023-09-19

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) Production Method

Additional information on 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1)

Introduction to 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) and Its Applications in Modern Chemical Research

1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1), with the CAS number 24298-17-7, is a specialized quaternary ammonium salt that has garnered significant attention in the field of chemical biology and pharmaceutical research. This compound, characterized by its unique structural properties, plays a pivotal role in various scientific applications, including drug delivery systems, surface modification, and the development of novel materials. Its molecular architecture, featuring a bromide counterion and a highly lipophilic structure, makes it an intriguing candidate for interdisciplinary studies.

The synthesis and characterization of 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) involve meticulous attention to detail to ensure high purity and yield. The compound is typically prepared through the reaction of N-propyl-1-octanamine with hydrobromic acid, resulting in the formation of the bromide salt. Advanced spectroscopic techniques such as nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry are employed to confirm its molecular structure and purity. These analytical methods provide critical insights into the compound's chemical environment and interactions, which are essential for understanding its behavior in biological systems.

In recent years, 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) has been extensively studied for its potential applications in pharmaceutical formulations. Its cationic nature and amphiphilic properties make it an excellent candidate for developing novel drug delivery systems. For instance, researchers have explored its use in creating liposomes and micelles, which can encapsulate hydrophobic drugs and enhance their bioavailability. These nanocarriers offer targeted delivery to specific tissues, reducing side effects and improving therapeutic efficacy.

Moreover, the compound's ability to interact with biological membranes has opened new avenues in the field of surface science. By modifying surface properties, 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) has been utilized in the development of antimicrobial coatings and biocompatible materials. These applications are particularly relevant in medical device manufacturing, where preventing microbial contamination is crucial. The compound's stability under various environmental conditions further enhances its suitability for such applications.

Recent advancements in polymer chemistry have also highlighted the role of 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) as a monomer or additive in the synthesis of functional polymers. Its incorporation into polymer matrices can modify thermal stability, mechanical strength, and electrical conductivity. Such modifications are essential for developing high-performance materials used in electronics, coatings, and industrial applications. The compound's compatibility with other polymers makes it a versatile building block for creating tailored material properties.

The pharmacological potential of 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) has not been overlooked. Preliminary studies suggest that it may exhibit properties beneficial in treating neurological disorders by interacting with specific ion channels and receptors. While further research is needed to fully elucidate its mechanism of action, these findings underscore its importance as a lead compound in medicinal chemistry. The development of new therapeutic agents often relies on compounds that can modulate biological pathways effectively.

In conclusion, 1-Octanaminium,N,N-dioctyl-N-propyl-, bromide (1:1) is a multifaceted compound with diverse applications across multiple scientific disciplines. Its unique structural features and functional properties make it invaluable for drug delivery systems, surface modifications, polymer science, and pharmacological research. As scientific understanding continues to evolve, the potential uses of this compound are likely to expand further, driving innovation in both academic and industrial settings.

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