N,N-Diglycidylaniline
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- Molecular formula
- C12H15NO2
- CAS Number
- 2095-06-9
- IUPAC Name
- N,N-bis(oxiran-2-ylmethyl)aniline
- Molecular Weight
- 208.26g/mol
- Melting Point
- (Celsius)
- Boiling Point
- (Celsius)
- Density
- 1.1330g/cm3
- Synonyms
- Diglycidylaniline
Identification
Interesting facts
Interesting Facts about N,N-bis(oxiran-2-ylmethyl)aniline
N,N-bis(oxiran-2-ylmethyl)aniline is a fascinating compound that showcases the beauty and complexity of organic chemistry. Here are some intriguing aspects of this compound:
- Structure Insights: This compound features both an aniline functionality, which provides its aromatic nature, and two oxirane (epoxide) rings that contribute to its reactivity. The presence of these epoxide groups can facilitate various chemical reactions, making it a valuable building block in synthetic chemistry.
- Applications: Due to its unique structure, N,N-bis(oxiran-2-ylmethyl)aniline plays a role in the synthesis of more complex organic molecules, particularly in polymer chemistry. Its epoxide groups may undergo ring-opening reactions, leading to the formation of polymers with desirable properties. Such compounds are often utilized in the production of coatings, adhesives, and specialty materials.
- Regulatory Aspects: As with many chemicals, understanding the safety and regulatory status of N,N-bis(oxiran-2-ylmethyl)aniline is crucial. Given its reactive nature, proper handling and disposal protocols must be observed to minimize environmental impact and ensure researcher safety.
- Synthetic Versatility: The compound can be synthesized through various routes, often involving the reaction of anilines with epichlorohydrin or similar reagents. This versatility in synthesis allows chemists to explore its potential in drug development and the creation of novel materials.
- Research and Development: The ongoing exploration of N,N-bis(oxiran-2-ylmethyl)aniline within scientific research highlights its potential as a target for new functionalities in pharmaceuticals. Studies often examine the implications of incorporating these oxirane structures into biologically active molecules.
In conclusion, the compound N,N-bis(oxiran-2-ylmethyl)aniline not only illustrates the intricate relationships between structure and function in organic chemistry but also emphasizes the importance of interdisciplinary collaboration in advancing the field of materials science and medicinal chemistry.