Cas no 90199-57-8 (2-(Ethoxymethoxy)methylfuran)

2-(Ethoxymethoxy)methylfuran structure
2-(Ethoxymethoxy)methylfuran structure
Product Name:2-(Ethoxymethoxy)methylfuran
CAS No:90199-57-8
MF:C8H12O3
MW:156.179082870483
MDL:MFCD18837613
CID:1039334
PubChem ID:54759080
Update Time:2025-07-22

2-(Ethoxymethoxy)methylfuran Chemical and Physical Properties

Names and Identifiers

    • 2-((Ethoxymethoxy)methyl)furan
    • 2-(Ethoxymethoxy)methylfuran
    • 2-(ethoxymethoxymethyl)furan
    • 2-Aethoxymethoxymethyl-furan
    • 2-[(Ethoxymethoxy)methyl]furan
    • MFCD18837613
    • AKOS015908335
    • CS-0208651
    • BS-33083
    • 90199-57-8
    • DTXSID30716682
    • SB61264
    • MDL: MFCD18837613
    • Inchi: 1S/C8H12O3/c1-2-9-7-10-6-8-4-3-5-11-8/h3-5H,2,6-7H2,1H3
    • InChI Key: REPHSEUIOZNWHZ-UHFFFAOYSA-N
    • SMILES: O(COCC)CC1=CC=CO1

Computed Properties

  • Exact Mass: 156.07900
  • Monoisotopic Mass: 156.078644241g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 3
  • Heavy Atom Count: 11
  • Rotatable Bond Count: 5
  • Complexity: 95.3
  • 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
  • XLogP3: 1
  • Topological Polar Surface Area: 31.6?2

Experimental Properties

  • PSA: 31.60000
  • LogP: 1.79020

2-(Ethoxymethoxy)methylfuran Customs Data

  • HS CODE:2932190090
  • Customs Data:

    China Customs Code:

    2932190090

    Overview:

    2932190090 Other structurally non fused furan ring compounds. VAT:17.0% Tax refund rate:9.0% Regulatory conditions:nothing MFN tariff:6.5% general tariff:20.0%

    Declaration elements:

    Product Name, component content, use to

    Summary:

    2932190090 other compounds containing an unfused furan ring (whether or not hydrogenated) in the structure VAT:17.0% Tax rebate rate:9.0% Supervision conditions:none MFN tariff:6.5% General tariff:20.0%

2-(Ethoxymethoxy)methylfuran Pricemore >>

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Additional information on 2-(Ethoxymethoxy)methylfuran

Introduction to 2-(Ethoxymethoxy)methylfuran (CAS No. 90199-57-8)

2-(Ethoxymethoxy)methylfuran, identified by the Chemical Abstracts Service Number (CAS No.) 90199-57-8, is a significant compound in the realm of organic chemistry and pharmaceutical research. This heterocyclic ether features a unique structural motif that has garnered considerable attention due to its versatile applications in synthetic chemistry and potential roles in drug development. The compound's molecular structure, comprising a furan ring substituted with an ethoxymethoxy group, positions it as a valuable intermediate in the synthesis of more complex molecules.

The furan ring, a five-membered aromatic oxygen-containing heterocycle, is well-documented for its reactivity and utility in medicinal chemistry. The presence of the ethoxymethoxy substituent enhances the compound's functionality, making it a promising candidate for further derivatization. This feature is particularly intriguing for researchers exploring novel pharmacophores, as it introduces both electron-withdrawing and electron-donating effects that can modulate biological activity.

In recent years, there has been growing interest in the development of bioactive molecules derived from furan-based scaffolds. The 2-(Ethoxymethoxy)methylfuran structure has been investigated for its potential in generating compounds with antimicrobial, anti-inflammatory, and even anticancer properties. Its ability to undergo various chemical transformations, such as nucleophilic addition and etherification reactions, makes it a versatile building block for medicinal chemists.

One of the most compelling aspects of 2-(Ethoxymethoxy)methylfuran is its role in the synthesis of more complex natural products and drug candidates. For instance, researchers have leveraged this compound to develop analogs of known bioactive agents, aiming to improve potency and selectivity while reducing side effects. The ethoxymethoxy group provides a handle for further functionalization, allowing chemists to tailor the molecule's properties to specific biological targets.

Recent studies have highlighted the compound's utility in the synthesis of kinase inhibitors, which are critical in treating various cancers and inflammatory diseases. The furan ring's ability to interact with metal ions and other small molecules has been exploited to design highly specific inhibitors. Furthermore, the ethoxymethoxy moiety can be modified to enhance solubility or metabolic stability, key factors in drug development.

The chemical reactivity of 2-(Ethoxymethoxy)methylfuran also makes it an attractive candidate for catalytic processes. Transition metal-catalyzed reactions, such as cross-coupling and oxidation processes, have been employed to introduce additional functional groups or to construct complex architectures efficiently. These methods align with the growing emphasis on green chemistry principles, where atom economy and minimal waste are prioritized.

In addition to its pharmaceutical applications, 2-(Ethoxymethoxy)methylfuran has found utility in materials science. Its ability to form stable derivatives with various metals has led to its use in designing metal-organic frameworks (MOFs) and other functional materials. These materials have potential applications in gas storage, catalysis, and even electronics.

The synthesis of 2-(Ethoxymethoxy)methylfuran itself is an area of active research. While several methods have been reported, there is ongoing effort to develop more efficient and sustainable routes. Recent advances in catalytic systems have enabled the production of this compound with higher yields and fewer byproducts, aligning with global trends toward sustainable chemical manufacturing.

The safety profile of 2-(Ethoxymethoxy)methylfuran is another critical consideration. While not classified as hazardous under typical conditions, proper handling procedures must be followed to ensure worker safety. Storage conditions should be controlled to prevent degradation or unwanted reactions, particularly when exposed to moisture or light.

Future research directions for 2-(Ethoxymethoxy)methylfuran may include exploring its role in drug discovery through high-throughput screening campaigns or computational modeling studies. By integrating experimental data with predictive modeling techniques, researchers can accelerate the discovery of novel bioactive compounds derived from this scaffold.

In conclusion,2-(Ethoxymethoxy)methylfuran (CAS No. 90199-57-8) represents a fascinating compound with broad applications across multiple scientific disciplines. Its unique structural features make it a valuable tool for synthetic chemists and pharmacologists alike. As research continues to uncover new possibilities for this molecule,2-(Ethoxymethoxy)methylfuran is poised to play an increasingly important role in the development of next-generation therapeutics and materials.

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