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Identification
Molecular formula
C14H19NO2
CAS number
.
IUPAC name
(5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one
State
State

At room temperature, this compound is a solid.

Melting point (Celsius)
147.00
Melting point (Kelvin)
420.00
Boiling point (Celsius)
307.00
Boiling point (Kelvin)
580.00
General information
Molecular weight
233.30g/mol
Molar mass
233.3010g/mol
Density
1.2000g/cm3
Appearence

This compound is a solid at room temperature. The solid form typically appears as a crystalline powder or aggregate. The color can range depending on purity from white to an off-white or pale yellow.

Comment on solubility

Solubility of (5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one

The solubility of (5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one is a crucial property that affects its applications in various fields. This compound's solubility can be influenced by several factors, which are worth considering:

  • Polarity: The distribution of polarity within the molecular structure can significantly influence solubility. Compounds that are polar tend to dissolve well in polar solvents, while non-polar compounds are better suited for non-polar solvents.
  • Temperature: As temperature increases, solubility can change. Many compounds become more soluble at elevated temperatures, although some may exhibit decreased solubility.
  • pH Levels: For certain compounds, especially those containing functional groups that can ionize, pH can play a vital role in solubility. An acidic or basic environment might enhance or inhibit solubility depending on the compound's characteristics.
  • Interactions with Solvents: The ability of a compound to interact with solvent molecules can affect solubility. For instance, hydrogen bonding or van der Waals forces can enhance dissolving capabilities.

In practice, the solubility of (5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one can be evaluated through its behavior in various solvents, providing insights into its potential use in organic synthesis or pharmacological applications. Understanding its solubility is essential, as it dictates the compound's reactivity and usability in different environments.

Interesting facts

Interesting Facts about (5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one

This intriguing compound belongs to a class of numerous biologically active molecules known for their complex structures and varied chemical properties. Here are some fascinating insights into its significance and applications:

  • Spiro Compounds: The spiro architecture in this compound creates a unique three-dimensional structure, contributing to its potential activity in biological systems. This structural arrangement can influence how the compound interacts with enzymes and receptors.
  • Biological Activity: Compounds like this one often exhibit valuable pharmacological properties. They may act as *agents in medicinal chemistry*, potentially leading to the development of new pharmaceuticals, particularly in fields such as pain management and neuropharmacology.
  • Ring Systems: The presence of both azabicyclic and pyran units in the structure could lead to diverse reactivity patterns. Researchers are particularly interested in how these fused rings may affect the compound's overall *reactivity and stability*.
  • Synthesis Challenges: The synthetic pathways to constructing such intricate molecules can be quite challenging, often requiring advanced techniques in organic synthesis. This makes the study of this compound significant for educational and research purposes.
  • Potential Applications: Beyond medicinal uses, spiro compounds are also explored in materials science and catalysis, making research on this compound pivotal for those looking to expand its practical implications in *various fields*.

As with many compounds in the realm of organic chemistry, the vibrancy of (5R)-2,4'-dimethylspiro[2-azabicyclo[2.2.2]octane-5,2'-3H-pyran]-6'-one provides an exciting opportunity for discovery and innovation.