Cas no 22072-45-3 (1,3-bis(methoxymethyl)benzene)

1,3-Bis(methoxymethyl)benzene is a versatile aromatic compound characterized by two methoxymethyl functional groups attached to a benzene ring at the 1 and 3 positions. This structure imparts solubility in organic solvents and reactivity in various chemical transformations, making it valuable as an intermediate in organic synthesis. Its methoxymethyl groups serve as protective or functional handles in polymerization, crosslinking, or derivatization reactions. The compound exhibits stability under standard conditions, facilitating handling and storage. It is particularly useful in the production of specialty polymers, resins, and fine chemicals, where controlled reactivity and functional group compatibility are required. Its balanced properties make it a practical choice for applications demanding precise molecular architecture.
1,3-bis(methoxymethyl)benzene structure
1,3-bis(methoxymethyl)benzene structure
Product Name:1,3-bis(methoxymethyl)benzene
CAS No:22072-45-3
MF:C10H14O2
MW:166.216963291168
MDL:MFCD06200786
CID:250418
PubChem ID:6430775
Update Time:2025-11-02

1,3-bis(methoxymethyl)benzene Chemical and Physical Properties

Names and Identifiers

    • Benzene,1,3-bis(methoxymethyl)-
    • 1,3-BIS(METHOXYMETHYL)BENZENE
    • 1,3-bis-methoxymethyl-benzene
    • 1,3-Bis-methoxymethyl-benzol
    • 1,3-di-(methoxy-methyl)benzene
    • Benzene,1,3-bis(methoxymethyl)
    • m-xylylene glycol dimethyl ether
    • FT-0690858
    • DTXSID50424010
    • 22072-45-3
    • EN300-25390173
    • SCHEMBL13313140
    • .alpha.,.alpha.-Dimethoxy-m-xylene
    • SCHEMBL487468
    • AKOS006294714
    • 1,3-bis(methoxymethyl)benzene
    • MDL: MFCD06200786
    • Inchi: 1S/C10H14O2/c1-11-7-9-4-3-5-10(6-9)8-12-2/h3-6H,7-8H2,1-2H3
    • InChI Key: BPJINPBZQICULW-UHFFFAOYSA-N
    • SMILES: O(C)CC1C=CC=C(COC)C=1

Computed Properties

  • Exact Mass: 166.09900
  • Monoisotopic Mass: 166.099379685g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 2
  • Heavy Atom Count: 12
  • Rotatable Bond Count: 4
  • Complexity: 102
  • 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
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing
  • Topological Polar Surface Area: 18.5?2

Experimental Properties

  • Color/Form: Undetermined 2. density (g/ml, 25/4 ℃)
  • PSA: 18.46000
  • LogP: 1.97940

1,3-bis(methoxymethyl)benzene Customs Data

  • HS CODE:2909309090
  • Customs Data:

    China Customs Code:

    2909309090

    Overview:

    2909309090 Other aromatic ethers and their halogenated derivatives\sulfonation\Nitrated derivative(Including nitrosative derivatives).Regulatory conditions:nothing.VAT:17.0%.Tax refund rate:9.0%.MFN tariff:5.5%.general tariff:30.0%

    Declaration elements:

    Product Name, component content, use to

    Summary:

    2909309090 other aromatic ethers and their halogenated, sulphonated, nitrated or nitrosated derivatives VAT:17.0% Tax rebate rate:9.0% Supervision conditions:none MFN tariff:5.5% General tariff:30.0%

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Additional information on 1,3-bis(methoxymethyl)benzene

1,3-Bis(methoxymethyl)benzene (CAS No. 22072-45-3): Properties, Applications, and Market Insights

1,3-Bis(methoxymethyl)benzene (CAS No. 22072-45-3), also known as 1,3-benzenedimethanol dimethyl ether, is a versatile organic compound with significant industrial applications. This aromatic ether is characterized by its unique molecular structure, featuring two methoxymethyl groups attached to a benzene ring at the 1 and 3 positions. Its chemical formula is C10H14O2, and it is widely recognized for its role as an intermediate in the synthesis of various specialty chemicals.

The compound's physical and chemical properties make it valuable in multiple industries. With a molecular weight of 166.22 g/mol, 1,3-bis(methoxymethyl)benzene typically appears as a colorless to pale yellow liquid. It has a boiling point ranging between 250-260°C and a melting point of approximately -20°C. The compound exhibits moderate solubility in organic solvents like ethanol, acetone, and ether, while being practically insoluble in water. These properties contribute to its utility in formulations requiring controlled solubility and reactivity.

In the pharmaceutical industry, 1,3-bis(methoxymethyl)benzene serves as a key building block for drug synthesis. Researchers utilize its reactive sites to create complex molecular architectures found in various therapeutic agents. Recent studies highlight its potential in developing novel anti-inflammatory compounds, aligning with the growing demand for innovative treatments in the healthcare sector. The compound's stability under physiological conditions makes it particularly attractive for medicinal chemistry applications.

The material science field extensively employs 1,3-benzenedimethanol dimethyl ether in polymer production. It acts as a cross-linking agent and monomer in the synthesis of specialty resins with enhanced thermal stability. These materials find applications in high-performance coatings, adhesives, and electronic components. With the global push toward sustainable materials, researchers are exploring its use in bio-based polymers, addressing the increasing consumer demand for eco-friendly products.

Recent market analysis indicates growing interest in 1,3-bis(methoxymethyl)benzene across Asia-Pacific regions, particularly in China and India. The compound's applications in electronic materials and advanced coatings align with these regions' expanding manufacturing sectors. Industry reports suggest a compound annual growth rate (CAGR) of 5-7% for similar chemical intermediates, reflecting the broader trends in specialty chemicals market expansion.

From a synthesis perspective, 1,3-bis(methoxymethyl)benzene is typically produced through the methoxymethylation of m-xylene or its derivatives. Modern production methods emphasize green chemistry principles, focusing on catalyst optimization and waste reduction. These advancements respond to the chemical industry's increasing emphasis on sustainable manufacturing processes, a topic frequently searched by professionals in the field.

Quality control measures for 22072-45-3 involve rigorous analytical techniques including gas chromatography (GC) and nuclear magnetic resonance (NMR) spectroscopy. The compound's purity specification typically exceeds 98%, with stringent controls on residual solvents and by-products. These quality standards ensure consistent performance in downstream applications, meeting the exacting requirements of industries such as electronics and pharmaceuticals.

Storage and handling recommendations for 1,3-bis(methoxymethyl)benzene emphasize protection from moisture and extreme temperatures. While not classified as hazardous under standard regulations, proper industrial hygiene practices should be maintained during its use. Material safety data sheets (MSDS) provide comprehensive guidance on personal protective equipment and spill management procedures.

Emerging research explores novel applications of 1,3-benzenedimethanol dimethyl ether in energy storage systems. Preliminary studies suggest its potential as an electrolyte additive in lithium-ion batteries, addressing the growing market demand for improved energy storage solutions. This application aligns with global trends in renewable energy and electric vehicle adoption, topics generating significant search volume in technical and business communities.

The competitive landscape for 1,3-bis(methoxymethyl)benzene includes several established chemical manufacturers and specialized suppliers. Procurement strategies should consider factors such as supply chain reliability, technical support capabilities, and regulatory compliance. Recent disruptions in global chemical supply chains have increased professional interest in alternative sourcing options and inventory management best practices.

Environmental considerations for 22072-45-3 include proper waste management and biodegradation studies. While the compound demonstrates moderate persistence in aquatic environments, appropriate treatment methods can effectively mitigate environmental impact. These aspects are increasingly important to chemical users facing stricter environmental regulations and sustainability reporting requirements.

Future developments in 1,3-bis(methoxymethyl)benzene applications may include expanded use in nanotechnology and advanced material composites. Research institutions and corporate R&D departments are actively investigating these possibilities, responding to industry needs for materials with tailored properties. Patent analysis reveals growing intellectual property activity surrounding derivatives and novel applications of this chemical intermediate.

For researchers and industrial users seeking detailed technical information about 1,3-bis(methoxymethyl)benzene, authoritative sources include chemical databases, peer-reviewed journals, and manufacturer technical bulletins. The compound's unique properties continue to inspire innovation across multiple industries, ensuring its ongoing relevance in the chemical marketplace.

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