Introduction of CAS:17616-03-4 | 1-DODECYL-PYRROLE-2,5-DIONE
"1H-Pyrrole-2,5-dione, 1-dodecyl-" is an organic compound that belongs to the pyrrole family of compounds . It has a molecular formula of C16H27NO2 and a molecular weight of 265.39 .
Specification of CAS:17616-03-4 | 1-DODECYL-PYRROLE-2,5-DIONE
|
ITEMS |
SPECIFICATION |
|
Melt point |
56-57 °C |
|
Purity |
95% |
|
Boiling point |
180 °C(Press: 5 Torr) |
|
Density |
0.987±0.06 g/cm3(Predicted) |
Research Application of CAS:17616-03-4 | 1-DODECYL-PYRROLE-2,5-DIONE
Bioconjugation
N-Laurylmaleimide has been used in bioconjugation, a process that involves attaching two biomolecules together. In one study, N-aryl maleimides, a class of compounds that includes N-Laurylmaleimide, were synthesized as potential radio-prosthetic groups for radiolabelling peptides and proteins . The researchers found that N-aryl maleimides reacted extremely efficiently with the model amino acid N-acetyl-L-cysteine .
Synthesis of Conjugated Polymers
N-Laurylmaleimide has been used in the synthesis of conjugated polymers. These polymers are particularly interesting in the field of electro-optic materials because of their desirable properties such as electrical conductivity, nonlinear optics, and electroluminescence .
Fluorescence Emission
The p-conjugated polymers synthesized using N-Laurylmaleimide have been found to exhibit strong photoluminescence from yellow to light blue colors in tetrahydrofuran . This property makes them potentially useful in the development of organic light-emitting diodes.
Thermal Stability
Polymers synthesized using N-Laurylmaleimide have been found to exhibit higher thermal stability than the monomer and other polymers . This property makes them potentially useful in applications that require materials with high thermal stability.
Use in Diels–Alder Reaction
N-phenylmaleimide, a compound similar to N-Laurylmaleimide, has been used in a Diels–Alder reaction . Although the specific use of N-Laurylmaleimide in this context is not mentioned, it's possible that it could be used in a similar manner.
Potential Use in Organic Transistors
Cyclic imide derivatives and their polymers, which include compounds like N-Laurylmaleimide, have been reported for use as n-type organic semiconducting materials in organic transistors .



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