Cas no 129109-88-2 (3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide)

3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide structure
129109-88-2 structure
Product Name:3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide
CAS No:129109-88-2
MF:C20H30INO3
MW:459.361578464508
CID:150221
Update Time:2025-07-09

3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide Chemical and Physical Properties

Names and Identifiers

    • 8-Azoniabicyclo[3.2.1]octane,3-[2-(hydroxymethyl)-1-oxo-2-phenylbutoxy]-8,8-dimethyl-, iodide (1:1)
    • (8,8-dimethyl-8-azoniabicyclo[3.2.1]octan-3-yl) 2-(hydroxymethyl)-2-phenylbutanoate,iodide
    • 3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide
    • Inchi: 1S/C20H30NO3.HI/c1-4-20(14-22,15-8-6-5-7-9-15)19(23)24-18-12-16-10-11-17(13-18)21(16,2)3;/h5-9,16-18,22H,4,10-14H2,1-3H3;1H/q+1;/p-1
    • InChI Key: PIQNXFBDPDECGD-UHFFFAOYSA-M
    • SMILES: [I-].O(C(C(C1C=CC=CC=1)(CO)CC)=O)C1CC2CCC(C1)[N+]2(C)C

Computed Properties

  • Hydrogen Bond Donor Count: 1
  • Hydrogen Bond Acceptor Count: 3
  • Heavy Atom Count: 25
  • Rotatable Bond Count: 6

3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide Pricemore >>

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Additional information on 3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo3.2.1octaneiodide

3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo[3.2.1]octane iodide

The compound with CAS No. 129109-88-2, known as 3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo[3.2.1]octane iodide, is a highly specialized organic compound with significant applications in advanced chemical research and development. This compound is notable for its unique structural features, which include a bicyclic azonium framework and a hydroxymethyl-substituted phenyl group, making it a valuable component in the synthesis of complex molecules and materials.

Recent studies have highlighted the potential of this compound in the field of drug delivery systems and nanotechnology. Its ability to form stable complexes with various biomolecules has been extensively explored, particularly in the context of targeted drug delivery. Researchers have demonstrated that the bicyclo[3.2.1]octane framework can serve as a versatile platform for attaching functional groups, enhancing the bioavailability and specificity of therapeutic agents.

In addition to its biomedical applications, this compound has also shown promise in materials science. The hydroxymethylphenylbutanoyloxy group has been found to exhibit unique optical properties, making it a candidate for use in advanced optical materials and sensors. Furthermore, its iodide counterion contributes to its stability under various environmental conditions, which is crucial for industrial applications.

From a synthetic perspective, the preparation of 3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo[3.2.1]octane iodide involves a multi-step process that requires precise control over reaction conditions to ensure high yields and purity. Recent advancements in catalytic methods have significantly improved the efficiency of its synthesis, making it more accessible for large-scale production.

The structural integrity of this compound is further enhanced by its dimethyl substitution, which not only stabilizes the azonium ring but also contributes to its solubility properties. This makes it an ideal candidate for use in aqueous-based formulations and biological systems where solubility is a critical factor.

Moreover, the compound's ability to undergo various post-synthetic modifications has opened new avenues for customization in response to specific application requirements. For instance, researchers have successfully introduced additional functional groups to enhance its reactivity or compatibility with other materials.

In conclusion, 3-{2-(Hydroxymethyl)-2-phenylbutanoyloxy}-8,8-dimethyl-8-azoniabicyclo[3.2.1]octane iodide represents a cutting-edge advancement in organic chemistry, offering versatile applications across multiple disciplines. Its unique structure and properties continue to drive innovative research and development efforts, positioning it as a key component in the creation of next-generation chemical products and technologies.

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