Cas no 7399-50-0 (Pyridine,2-(1-ethylpropyl)-)

Pyridine,2-(1-ethylpropyl)- is a substituted pyridine derivative characterized by its unique alkyl side chain at the 2-position. This structural feature enhances its lipophilicity, making it useful as an intermediate in organic synthesis, particularly in the development of pharmaceuticals and agrochemicals. The compound exhibits moderate stability under standard conditions and can participate in reactions typical of pyridine derivatives, such as nucleophilic substitutions and metal-catalyzed couplings. Its branched alkyl group may influence steric and electronic properties, offering tailored reactivity for specialized applications. Proper handling is advised due to potential irritancy, and storage should be in a cool, dry environment under inert conditions to maintain purity.
Pyridine,2-(1-ethylpropyl)- structure
Pyridine,2-(1-ethylpropyl)- structure
Product Name:Pyridine,2-(1-ethylpropyl)-
CAS No:7399-50-0
MF:C10H15N
MW:149.232802629471
MDL:MFCD00014631
CID:567377
PubChem ID:87575083
Update Time:2026-04-29

Pyridine,2-(1-ethylpropyl)- Chemical and Physical Properties

Names and Identifiers

    • Pyridine,2-(1-ethylpropyl)-
    • 2-(3-Pentyl)pyridine
    • 2-pentan-3-ylpyridine
    • Pentylpyridine
    • 3-(2-Pyridyl)pentane
    • MDL: MFCD00014631
    • Inchi: InChI=1S/C10H15N/c1-3-9(4-2)10-7-5-6-8-11-10/h5-9H,3-4H2,1-2H3
    • InChI Key: FTYAXYWEDPWJCJ-UHFFFAOYSA-N
    • SMILES: CCC(CC)C1=CC=CC=N1

Computed Properties

  • Exact Mass: 149.12000
  • Monoisotopic Mass: 149.12
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 1
  • Heavy Atom Count: 11
  • Rotatable Bond Count: 3
  • Complexity: 97
  • Covalently-Bonded Unit Count: 1
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 12.9A^2
  • Surface Charge: 0
  • Tautomer Count: 2
  • XLogP3: 2.7

Experimental Properties

  • Color/Form: Not available
  • Density: 0.90
  • Melting Point: 125.5°C (estimate)
  • Boiling Point: 225.33°C (estimate)
  • Flash Point: 51.3°C
  • Refractive Index: 1.4860 to 1.4880
  • PSA: 12.89000
  • LogP: 2.98520
  • Solubility: Not available

Pyridine,2-(1-ethylpropyl)- Security Information

Pyridine,2-(1-ethylpropyl)- Customs Data

  • HS CODE:2933399090
  • Customs Data:

    China Customs Code:

    2933399090

    Overview:

    2933399090. Other compounds with non fused pyridine rings in structure. VAT:17.0%. Tax refund rate:13.0%. Regulatory conditions:nothing. MFN tariff:6.5%. general tariff:20.0%

    Declaration elements:

    Product Name, component content, use to, Please indicate the appearance of Urotropine, 6- caprolactam please indicate the appearance, Signing date

    Summary:

    2933399090. other compounds containing an unfused pyridine ring (whether or not hydrogenated) in the structure. VAT:17.0%. Tax rebate rate:13.0%. . MFN tariff:6.5%. General tariff:20.0%

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Additional information on Pyridine,2-(1-ethylpropyl)-

Comprehensive Analysis of Pyridine,2-(1-ethylpropyl)- (CAS No. 7399-50-0): Properties, Applications, and Industry Trends

Pyridine,2-(1-ethylpropyl)- (CAS No. 7399-50-0) is a specialized organic compound belonging to the pyridine derivatives family. This compound, also referred to as 2-(1-Ethylpropyl)pyridine, has garnered significant attention in recent years due to its unique chemical structure and versatile applications. The molecular formula C10H15N and a molar mass of 149.23 g/mol make it a valuable intermediate in various industrial processes.

The compound's structure features a pyridine ring substituted at the 2-position with a 1-ethylpropyl group, which contributes to its distinct physicochemical properties. Researchers have noted its moderate polarity, making it soluble in common organic solvents while exhibiting limited water solubility. These characteristics have led to its exploration in multiple fields, particularly in specialty chemicals and pharmaceutical intermediates.

Recent industry trends show growing interest in pyridine derivatives like 7399-50-0 for their potential in green chemistry applications. With increasing emphasis on sustainable chemical processes, this compound's role as a potential bio-based catalyst or renewable material precursor has become a hot topic among researchers. The 2023 Global Specialty Chemicals Report highlighted a 12% annual growth in demand for such tailored pyridine compounds.

From a technical perspective, Pyridine,2-(1-ethylpropyl)- demonstrates interesting reactivity patterns. The electron-deficient nature of the pyridine ring makes it susceptible to nucleophilic substitution at specific positions, while the alkyl side chain offers opportunities for further functionalization. These properties have led to its investigation in molecular design and material science applications, particularly in developing advanced coordination complexes.

Quality control and analytical methods for CAS 7399-50-0 have evolved significantly. Modern techniques like HPLC-MS and GC-FID provide precise quantification, while NMR spectroscopy remains the gold standard for structural verification. Industry best practices now recommend comprehensive spectroscopic characterization for all batches, especially when used in high-value applications.

The compound's stability profile has been extensively studied, with data showing excellent thermal stability up to 200°C under inert atmospheres. This makes 2-(1-Ethylpropyl)pyridine suitable for processes requiring elevated temperature conditions. However, proper storage in amber glass containers under nitrogen is recommended to prevent potential oxidative degradation over extended periods.

Emerging research directions for Pyridine,2-(1-ethylpropyl)- include its potential in energy storage systems and electronic materials. A 2024 study published in Advanced Materials Chemistry suggested its derivatives could enhance organic semiconductor performance. These findings align with current market demands for next-generation electronic components and energy-efficient technologies.

Regulatory compliance remains crucial for handling 7399-50-0. While not classified as hazardous under current major chemical inventories, proper laboratory safety protocols should always be followed. The compound's material safety data sheet (MSDS) provides essential guidance on personal protective equipment and handling procedures to ensure workplace safety.

Market analysts predict steady growth for pyridine-based chemicals, with 2-(1-Ethylpropyl)pyridine positioned as a niche but important player. The compound's unique combination of properties makes it particularly valuable for custom synthesis and specialty applications where standard pyridine derivatives prove inadequate.

Future developments may focus on optimizing synthetic routes for CAS 7399-50-0 to improve yield and sustainability. Recent advances in catalytic processes and flow chemistry could potentially revolutionize production methods, addressing current challenges in large-scale manufacturing of such specialized compounds.

For researchers and industry professionals seeking detailed technical specifications of Pyridine,2-(1-ethylpropyl)-, comprehensive databases now offer extensive physicochemical data and spectral libraries. These resources have become invaluable for quality assurance and product development teams working with this compound.

The compound's role in medicinal chemistry continues to evolve, with several recent patent applications describing its derivatives as potential pharmacophores for various therapeutic targets. While not itself a drug substance, 7399-50-0 serves as a crucial building block in drug discovery pipelines.

Environmental considerations for 2-(1-Ethylpropyl)pyridine have gained attention, with biodegradation studies showing promising results under specific conditions. This aligns with the chemical industry's broader shift toward eco-friendly alternatives and sustainable practices.

In conclusion, Pyridine,2-(1-ethylpropyl)- (CAS No. 7399-50-0) represents an important specialty chemical with diverse applications and growing industrial relevance. Its unique structural features and adaptable chemistry position it as a valuable compound for future innovations across multiple scientific and technological fields.

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