9-bromo-7,12-dihydro-5H-indolo[3,2-d][1]benzazepin-6-one
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- Molecular formula
- C16H11BrN2O
- CAS Number
- 1187-71-3
- IUPAC Name
- 9-bromo-7,12-dihydro-5H-indolo[3,2-d][1]benzazepin-6-one
- Molecular Weight
- 299.17g/mol
- Melting Point
- (Celsius)
- Boiling Point
- (Celsius)
- Density
- 1.5430g/cm3
- Synonyms
- kenpaullone
Identification
Interesting facts
Interesting Facts about 9-bromo-7,12-dihydro-5H-indolo[3,2-d][1]benzazepin-6-one
This fascinating compound, 9-bromo-7,12-dihydro-5H-indolo[3,2-d][1]benzazepin-6-one, belongs to a family of organic compounds known for their complex structure and unique properties. Here are some intriguing insights into this molecule:
- Structural Complexity: This compound features a bicyclic structure that integrates both indole and benzazepine moieties, resulting in a molecule rich in aromatic characteristics.
- Biological Activity: Compounds related to indole and benzazepine structures have been studied for various biological activities, including anti-inflammatory and neuroprotective effects. They may serve as potential leads in drug development.
- Bromination Impact: The presence of the bromine atom in this compound can significantly influence its reactivity and biological activity, often enhancing solubility and altering pharmacokinetic properties.
- Synthetic Interest: The complexity of synthesizing compounds like this makes them of great interest in organic chemistry laboratories. Researchers continuously explore innovative synthetic routes to effectively construct such molecules.
- Research Applications: As researchers delve into the properties of indolo[3,2-d][1]benzazepines, this compound serves as a critical model for studying chemical behavior, interactions, and potential therapeutic uses.
In summary, 9-bromo-7,12-dihydro-5H-indolo[3,2-d][1]benzazepin-6-one is not just another molecule; it embodies a multitude of potential applications and importance in the fields of organic chemistry and medicinal research. Its structural uniqueness and diverse reactivity make it a subject of continued scientific intrigue.