Interesting facts
Interesting Facts About (1R,2R)-2-cyanocyclobutanecarboxamide
(1R,2R)-2-cyanocyclobutanecarboxamide is a fascinating chemical compound that has garnered interest due to its unique structure and potential applications. Here are some intriguing points about this compound:
- Chirality: The notation (1R,2R) indicates that this compound has a chiral center, which gives rise to different enantiomers. Chirality plays a crucial role in pharmacology, as different enantiomers can exhibit vastly different biological activities.
- Structural Attributes: The cyclobutane ring structure imparts distinctive strain and reactivity characteristics not found in larger cyclic compounds. This can lead to interesting synthetic pathways and reactivity that chemists often explore in organic synthesis.
- Biological Relevance: Compounds with amide functional groups are often of great interest in medicinal chemistry due to their ability to form hydrogen bonds. This can enhance the bioavailability and efficacy of drug candidates.
- Synthetic Applications: The building block nature of (1R,2R)-2-cyanocyclobutanecarboxamide makes it a versatile intermediate, potentially useful in the synthesis of more complex organic molecules, including pharmaceuticals and agrochemicals.
- Research Potential: The unique properties of this compound suggest it could be a subject of study for new materials or catalytic processes, furthering our understanding of synthetic methods and material science.
As a prominent example of how structural nuances can lead to diverse applications, (1R,2R)-2-cyanocyclobutanecarboxamide invites researchers to unlock its secrets and explore its potential in various fields of chemistry and material science.
Synonyms
NSC 527263
CYCLOBUTANECARBOXAMIDE, 2-CYANO-, trans-
trans-2-Cyanocyclobutanecarboxamide
16200-68-3
USAF ST-16
AKOS006362067
Solubility of (1R,2R)-2-cyanocyclobutanecarboxamide
(1R,2R)-2-cyanocyclobutanecarboxamide is a fascinating organic compound characterized by its unique structural features. Understanding its solubility is crucial for applications in various fields, from pharmaceuticals to materials science.
The solubility of this compound can be influenced by several key factors:
Typically, compounds that are polar or capable of hydrogen bonding tend to be more soluble in polar solvents such as water and alcohols. However, the overall solubility parameters should be experimentally determined, as they can vary based on concentration and temperature conditions.
In conclusion, while preliminary predictions can be made based on the functional groups present, the full solubility profile of (1R,2R)-2-cyanocyclobutanecarboxamide necessitates empirical analysis to comprehend its behavior in different solvents.