
CAS 73954-34-4
:N-(2,2-dimethoxy-ethyl)-3,4-dimethoxyphenylacetamide
Description:
N-(2,2-dimethoxy-ethyl)-3,4-dimethoxyphenylacetamide, identified by its CAS number 73954-34-4, is a chemical compound that belongs to the class of amides. This substance features a phenylacetamide structure, characterized by the presence of an acetamide functional group attached to a phenyl ring that is further substituted with methoxy groups. The presence of two methoxy groups on the phenyl ring enhances its lipophilicity and may influence its biological activity. The 2,2-dimethoxyethyl substituent contributes to the compound's overall hydrophobic character, which can affect its solubility and interaction with biological systems. Such compounds are often studied for their potential pharmacological properties, including analgesic or anti-inflammatory effects. The specific arrangement of functional groups in this molecule may also play a critical role in its reactivity and stability under various conditions. As with many organic compounds, safety data and handling precautions should be considered when working with this substance in a laboratory setting.
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Found 5 products.
N-(2,2-dimethoxy-ethyl)-3,4-dimethoxyphenylacetamide
CAS:Formula:C14H21NO5Purity:95%Molecular weight:283.3202Ivabradine impurity 2
CAS:<p>Ivabradine impurity 2: oral HCN channel blocker impurity.</p>Formula:C14H21NO5Color and Shape:SolidMolecular weight:283.32N-(2,2-Dimethoxyethyl)-3,4-dimethoxybenzeneacetamide(Ivabradine Impurity)
CAS:Controlled ProductFormula:C14H21NO5Color and Shape:NeatMolecular weight:283.32N-(2,2-Dimethoxyethyl)-3,4-dimethoxybenzeneacetamide(ivabradine impurity)
CAS:<p>N-(2,2-dimethoxyethyl)-3,4-dimethoxybenzeneacetamide is a drug impurity that is used as a research and development or impurity standard. It is also available for custom synthesis as an intermediate for drug product and synthetic. This product has high purity, with a purity of 99%. The CAS number for this compound is 73954-34-4. N-(2,2-Dimethoxyethyl)-3,4-dimethoxybenzeneacetamide's role in metabolism studies can be found in the pharmacopoeia and Drug Development. Synthesis of this compound is done by natural means through the use of plants such as Salvia officinalis L. (sage).</p>Formula:C14H21NO5Purity:Min. 95%Molecular weight:283.32 g/mol




