Cas no 13179-98-1 (1,6-Dimethoxyhexane)

1,6-Dimethoxyhexane is a linear aliphatic ether with the molecular formula C?H??O?. This compound is characterized by its two methoxy groups positioned at the terminal ends of a hexane chain, imparting moderate polarity and solubility in both organic and aqueous environments. It is commonly utilized as a solvent or intermediate in organic synthesis, particularly in reactions requiring controlled polarity or as a protecting group for diols. Its stable ether linkage and predictable reactivity make it a reliable choice for applications in pharmaceuticals, agrochemicals, and specialty chemical manufacturing. The compound's low volatility and high boiling point further enhance its suitability for high-temperature processes.
1,6-Dimethoxyhexane structure
1,6-Dimethoxyhexane structure
Product Name:1,6-Dimethoxyhexane
CAS No:13179-98-1
MF:C8H18O2
MW:146.227323055267
MDL:MFCD00142569
CID:86881
PubChem ID:87569239
Update Time:2025-05-20

1,6-Dimethoxyhexane Chemical and Physical Properties

Names and Identifiers

    • 1,6-DIMETHOXYHEXANE
    • HEXAMETHYLENE GLYCOL DIMETHYL ETHER
    • 1,6-HEXANEDIOL DIMETHYL ETHER
    • 1,6-Dimethoxy-hexan
    • 1,6-dimethoxy-hexane
    • Hexamethylenglykol-dimethylaether
    • Hexandiol-(1.6)-dimethylaether
    • Hexane,1,6-dimethoxy
    • Hexamethylene Glycol Dimethyl Ether 1,6-Hexanediol Dimethyl Ether
    • Hexane,1,6-dimethoxy-
    • Hexane, 1,6-dimethoxy-
    • GZHQUHIMIVEQFV-UHFFFAOYSA-N
    • AS02532
    • D2858
    • Q63408600
    • 13179-98-1
    • MFCD00142569
    • DTXSID30337391
    • J-006056
    • D90120
    • 1,6-Dimethoxyhexane, 98%
    • SCHEMBL345679
    • AKOS015913445
    • DTXCID70288479
    • 1,6-Dimethoxyhexane
    • MDL: MFCD00142569
    • Inchi: 1S/C8H18O2/c1-9-7-5-3-4-6-8-10-2/h3-8H2,1-2H3
    • InChI Key: GZHQUHIMIVEQFV-UHFFFAOYSA-N
    • SMILES: O(C)CCCCCCOC

Computed Properties

  • Exact Mass: 146.13100
  • Monoisotopic Mass: 146.13068
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 2
  • Heavy Atom Count: 10
  • Rotatable Bond Count: 7
  • Complexity: 47.2
  • 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: 18.5
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: 1.4

Experimental Properties

  • Color/Form: colorless liquid
  • Density: 0.851?g/mL?at 25?°C(lit.)
  • Melting Point: No date available
  • Boiling Point: 182-183?°C(lit.)
  • Flash Point: Fahrenheit: 156.2 ° f
    Celsius: 69 ° c
  • Refractive Index: n20/D 1.415(lit.)
  • PSA: 18.46000
  • LogP: 1.83960
  • Solubility: Not determined
  • Vapor Pressure: 2.1±0.3 mmHg at 25°C

1,6-Dimethoxyhexane Security Information

  • Prompt:warning
  • Signal Word:warning
  • Hazard Statement: H227
  • Warning Statement: P210-P280-P370+P378-P403+P235-P501
  • WGK Germany:3
  • Safety Instruction: S24/25
  • Safety Term:S24/25
  • Storage Condition:storage at -4℃ (1-2weeks), longer storage period at -20℃ (1-2years)

1,6-Dimethoxyhexane Customs Data

  • HS CODE:2909199090
  • Customs Data:

    China Customs Code:

    2909199090

    Overview:

    2909199090. Other acyclic ethers and their halogenated derivatives(Including sulfonation,Nitrosative or nitrosative derivatives). VAT:17.0%. Tax refund rate:13.0%. Regulatory conditions:nothing. MFN tariff:5.5%. general tariff:30.0%

    Declaration elements:

    Product Name, component content, use to

    Summary:

    2909199090. other acyclic ethers and their halogenated, sulphonated, nitrated or nitrosated derivatives. VAT:17.0%. Tax rebate rate:13.0%. . MFN tariff:5.5%. General tariff:30.0%

1,6-Dimethoxyhexane Pricemore >>

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1,6-Dimethoxyhexane Production Method

1,6-Dimethoxyhexane Related Literature

Additional information on 1,6-Dimethoxyhexane

Professional Introduction to Compound with CAS No. 13179-98-1 and Product Name: 1,6-Dimethoxyhexane

1,6-Dimethoxyhexane, identified by the Chemical Abstracts Service Number (CAS No.) 13179-98-1, is a significant organic compound that has garnered attention in the field of pharmaceutical chemistry and materials science. This compound, characterized by its two methoxy functional groups attached to a hexane backbone, exhibits unique chemical properties that make it a valuable intermediate in synthetic chemistry. The presence of these methoxy groups imparts both reactivity and solubility characteristics that are highly beneficial in various chemical applications.

The structural configuration of 1,6-Dimethoxyhexane allows for diverse chemical transformations, making it a versatile building block in the synthesis of more complex molecules. In recent years, researchers have been exploring its potential in the development of novel pharmaceuticals and specialty chemicals. The compound's ability to participate in etherification, esterification, and other organic reactions has opened up numerous possibilities for its use in drug synthesis and industrial processes.

One of the most compelling aspects of 1,6-Dimethoxyhexane is its role in the synthesis of bioactive molecules. The methoxy groups provide points for further functionalization, enabling chemists to design molecules with specific biological activities. For instance, derivatives of 1,6-Dimethoxyhexane have been investigated for their potential as intermediates in the production of antiviral and anti-inflammatory agents. The compound's structural similarity to naturally occurring lipids also makes it a candidate for studying lipid-based drug delivery systems.

Recent advancements in synthetic methodologies have further enhanced the utility of 1,6-Dimethoxyhexane. Catalytic processes, such as those involving transition metal complexes, have enabled more efficient and selective transformations of this compound. These developments have not only improved the yield and purity of 1,6-Dimethoxyhexane-derived products but also opened new avenues for their application in pharmaceuticals and agrochemicals.

The solubility profile of 1,6-Dimethoxyhexane is another critical factor contributing to its widespread use. Its ability to dissolve in both polar and non-polar solvents makes it an excellent solvent or co-solvent in various chemical reactions. This property is particularly valuable in pharmaceutical formulations where compatibility with different solvent systems is essential for drug stability and bioavailability.

In the realm of materials science, 1,6-Dimethoxyhexane has been explored as a precursor for polymers and coatings. Its structural features allow for the creation of polymers with tailored properties, such as flexibility and thermal stability. These materials find applications in industries ranging from automotive to electronics, where performance under varying conditions is crucial.

The environmental impact of using 1,6-Dimethoxyhexane has also been a point of interest. As synthetic chemistry moves towards more sustainable practices, researchers are evaluating the biodegradability and toxicity profile of this compound. Efforts are underway to develop greener synthetic routes that minimize waste and reduce environmental footprint while maintaining high yields of 1,6-Dimethoxyhexane derivatives.

Future research directions for 1,6-Dimethoxyhexane include its application in drug discovery and development. The compound's structural flexibility allows for the creation of diverse molecular scaffolds that can be screened for biological activity. High-throughput screening technologies combined with computational modeling are being employed to identify novel therapeutic agents derived from 1,6-Dimethoxyhexane.

Moreover, the role of 1,6-Dimethoxyhexane in nanotechnology has not been overlooked. Its use as a ligand or solvent in nanoparticle synthesis has shown promise in enhancing the efficiency of catalytic processes and improving material properties. These applications highlight the compound's versatility beyond traditional organic synthesis.

In conclusion,1,6-Dimethoxyhexane (CAS No. 13179-98-1) is a multifaceted compound with significant potential across multiple industries. Its unique structural features enable diverse applications in pharmaceuticals, materials science, and nanotechnology. As research continues to uncover new uses for this compound,its importance is likely to grow,driving innovation and progress in synthetic chemistry and related fields.

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