Introduction of CAS:37529-30-9 | 4-N-DECYLANILINE
4-Decylaniline (4-DA) is an aromatic amine that is widely used as a reagent in organic synthesis and as a starting material in the production of various industrial products. It is also an important intermediate in the synthesis of pharmaceuticals, dyes, and other organic compounds. 4-DA is a colorless, volatile liquid with a pungent odor and a boiling point of 166 °C. It is soluble in organic solvents and slightly soluble in water. The chemical formula of 4-DA is C10H19N.
Specification of CAS:37529-30-9 | 4-N-DECYLANILINE
|
ITEMS |
SPECIFICATION |
|
Melt point |
25 °C (lit.) |
|
Boiling point |
218-220 °C/14 mmHg (lit.) |
|
Density |
0.8952 (estimate) |
|
Refractive index |
1.5100 |
|
Acidity coefficient (pKa) |
4.96±0.10(Predicted) |
|
Color |
Colorless to Brown |
|
Form |
clear liquid |
Related Articles of CAS:37529-30-9 | 4-N-DECYLANILINE
Enzyme Inhibition and Stereospecificity Studies
4-Decylaniline has been studied for its role in enzyme inhibition, specifically in the context of peroxidase action. It was found to inhibit the enzyme activity, particularly in higher homologous series. This inhibition effect provides insights into the stereospecificity of enzyme reactions and contributes to our understanding of biochemical processes (Baker & Saunders, 1975).
Plasticization of Poly(Ethyl Acrylate) Ionomer
Research has also explored the use of 4-Decylaniline (4DA) in the plasticization of poly(ethyl acrylate) ionomers. It was discovered that 4DA can modify the glass transitions in the ionomer, suggesting its utility in creating materials with adjustable physical properties. This application is significant in the field of material science, especially for developing new polymers with desired mechanical properties (Tong & Bazuin, 1992).
Use in Antimicrobial Agents
A study on N-Benzylanilines, closely related to 4-Decylaniline, demonstrated their potential as fatty acid synthesis inhibitors, particularly against biofilm-related Methicillin-resistant Staphylococcus aureus (MRSA). This finding suggests that compounds structurally similar to 4-Decylaniline could be promising in the development of new antimicrobial drugs, especially against resistant bacterial strains (Zhang et al., 2019).


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