Interesting facts
N-isobutyladamantan-1-amine: An Intriguing Compound
N-isobutyladamantan-1-amine is a fascinating chemical compound belonging to the class of amines, which are derived from ammonia by replacing one or more hydrogen atoms with organic groups. This compound features an adamantane core, which is a unique structure made up of a diamond-like arrangement of carbon atoms. Here are some interesting facts about N-isobutyladamantan-1-amine:
- Structural Uniqueness: The adamantane structure is highly symmetrical and often considered a "tricyclic" cluster. Its rigidity and three-dimensionality contribute unique properties that differ from linear or planar organic compounds.
- Potential Applications: Compounds possessing amine groups are frequently utilized in various fields, including pharmaceuticals, agrochemicals, and as intermediates in organic synthesis. N-isobutyladamantan-1-amine may also exhibit interesting biological activity, potentially promoting research in medicinal chemistry.
- Tunable Properties: The presence of the isobutyl group allows for adjustable solubility and reactivity. This feature can be particularly beneficial in drug design, where optimizing interactions within the biological system is crucial.
- Structural Parent: Adamantane and its derivatives have been extensively studied for their potential applications in nanotechnology and materials science due to their unique structural characteristics.
As chemists continue to explore the properties and potential applications of this compound, it becomes clear that N-isobutyladamantan-1-amine represents the intersection of organic chemistry and innovative research. The exploration of such compounds will deepen our understanding and enhance the capability to engineer new materials and drugs for the future.
Synonyms
N-isobutyladamantan-1-amine
SCHEMBL23933285
SCHEMBL23933288
SCHEMBL30142422
AKOS000228050
Tricyclo[3.3.1.1]decan-1-amine, N-(2-methylpropyl)-
Solubility of N-isobutyladamantan-1-amine
N-isobutyladamantan-1-amine, a compound with interesting structural features, exhibits solubility characteristics that are influenced by its hydrophobic adamantane framework and hydrophilic amine group. The solubility of this compound can be summarized as follows:
In conclusion, while N-isobutyladamantan-1-amine presents solubility challenges in aqueous environments, it demonstrates a preference for organic media, highlighting the significance of structural factors in determining solubility behavior.