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2-butylspiro[2.2]pentane

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Identification
Molecular formula
C9H16
CAS number
1553-27-9
IUPAC name
2-butylspiro[2.2]pentane
State
State

At room temperature, 2-butylspiro[2.2]pentane is in a liquid state. Its unique molecular structure contributes to its physical properties.

Melting point (Celsius)
-85.00
Melting point (Kelvin)
188.15
Boiling point (Celsius)
145.00
Boiling point (Kelvin)
418.15
General information
Molecular weight
124.22g/mol
Molar mass
124.2230g/mol
Density
0.7560g/cm3
Appearence

2-Butylspiro[2.2]pentane is a colorless liquid that is typically studied for its distinct molecular structure and properties.

Comment on solubility

Solubility of 2-butylspiro[2.2]pentane

2-butylspiro[2.2]pentane is a unique compound with interesting solubility characteristics. As a spiro compound, its structural configuration impacts how it interacts with solvents. Generally, compounds of this nature can exhibit varying solubility based on several factors:

  • Polarity: The presence of polar and nonpolar functional groups heavily influences solubility. In the case of 2-butylspiro[2.2]pentane, the hydrophobic nature of the butyl group suggests a preference for nonpolar solvents.
  • Temperature: Solubility can increase with temperature. Therefore, warming the solvent might enhance the dissolution of 2-butylspiro[2.2]pentane.
  • Solvent Type: Nonpolar solvents such as hexane or toluene are likely more effective in dissolving this compound compared to polar solvents like water, where it is practically insoluble.

In summary, while 2-butylspiro[2.2]pentane may not be highly soluble in polar solvents, its solubility in nonpolar environments allows it to be more **readily accommodated**. Thus, one should always consider these factors when predicting the solubility of such spiro compounds.

Interesting facts

Insights into 2-Butylspiro[2.2]pentane

2-butylspiro[2.2]pentane is a fascinating compound known for its unique structural characteristics that can intrigue both chemists and enthusiasts of organic chemistry alike. Here are some key facts that highlight its significance:

  • Structural Variety: The "spiro" in 2-butylspiro[2.2]pentane indicates a spirocyclic compound, meaning it has two or more rings that share a single atom. This structure often leads to interesting types of stereochemistry.
  • Applications in Material Science: Such spiro compounds are often explored for their potential applications in developing novel materials with specific properties, such as polymers or high-strength materials.
  • Biological Importance: Compounds featuring spiro structures have garnered attention in medicinal chemistry as they may exhibit unique biological activities, making them potential candidates for drug discovery.
  • Synthesis Routes: The synthesis of 2-butylspiro[2.2]pentane often involves intricate reaction mechanisms, highlighting the creativity and skill of synthetic chemists. Typical methods might include reactions involving cyclopropanation or other ring-forming processes.
  • Isomeric Potential: As a compound with multiple chiral centers, 2-butylspiro[2.2]pentane can exist in various stereoisomeric forms. This characteristic opens up avenues for studying how different stereoisomers interact in biological systems.

Overall, the study of 2-butylspiro[2.2]pentane and similar compounds continues to provide valuable insights into the complexity and beauty of organic chemistry, showcasing how small changes in molecular structure can lead to vastly different properties and applications.

Synonyms
6191-90-8
1-Butylspiro[2.2]pentane
1-BUTYLSPIROPENTANE
Spiropentane, butyl-
Spiropentane, 1-butyl-
1-Butylspiro[2.2]pentane #
DTXSID00977460
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