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Geraniol

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Identification
Molecular formula
C10H18O
CAS number
106-24-1
IUPAC name
2,6-dimethylocta-5,7-dien-2-ol
State
State

Geraniol is a liquid at room temperature, often utilized in the fragrance and flavor industry.

Melting point (Celsius)
-15.00
Melting point (Kelvin)
258.15
Boiling point (Celsius)
230.00
Boiling point (Kelvin)
503.15
General information
Molecular weight
154.25g/mol
Molar mass
154.2500g/mol
Density
0.8786g/cm3
Appearence

Geraniol is a colorless liquid with a pleasant rose-like odor. It is often used in perfumes and as a flavoring agent due to its sweet floral fragrance.

Comment on solubility

Solubility of 2,6-Dimethylocta-5,7-dien-2-ol

2,6-Dimethylocta-5,7-dien-2-ol, commonly known for its unique structure and properties, showcases variable solubility characteristics that are influenced by several factors:

  • Polar vs. Nonpolar: The compound contains both hydrocarbon chains and a hydroxyl (-OH) group, which impart a degree of polarity. This dual characteristic means that it can interact with both polar and nonpolar solvents.
  • Solvent Compatibility: 2,6-Dimethylocta-5,7-dien-2-ol is likely to be soluble in alcohols, ethers, and other organic solvents due to its functionalities. However, its solubility in water may be limited, primarily because of the hydrophobic nature of the hydrocarbon portions.
  • Temperature Effects: The solubility of this compound may increase with rising temperature, as the kinetic energy enhances interactions with solvent molecules.
  • Concentration Dependence: In practice, the solubility may also vary depending on the concentration at which it is tested, showing different solubility behavior at higher concentrations.

In conclusion, while 2,6-dimethylocta-5,7-dien-2-ol exhibits positive solubility traits in specific solvents, its overall solubility is complex and multifaceted, embodying the intriguing balance of polarity and hydrophobicity.

Interesting facts

Interesting Facts about 2,6-Dimethylocta-5,7-dien-2-ol

2,6-Dimethylocta-5,7-dien-2-ol is a fascinating compound that showcases a range of interesting chemical properties and potential applications. Here are some highlights:

  • Structure and Stability: The compound features a branched hydrocarbon chain along with two double bonds. This unique configuration not only affects its reactivity but also plays a role in its stability under different conditions.
  • Natural Occurrence: Interestingly, similar compounds often occur in nature, particularly in essential oils and plant extracts. These natural variants may exhibit similar aromatic characteristics, making them valuable in the fragrance and flavor industries.
  • Biological Relevance: Some studies suggest that compounds like 2,6-dimethylocta-5,7-dien-2-ol can possess antimicrobial properties, contributing to the overall understanding of plant biology and potential applications in medicine.
  • Synthetic Applications: In synthetic organic chemistry, such compounds can serve as intermediates for creating a variety of other chemical structures, leading to diverse functional materials.
  • Environmental Impact: Understanding the synthesis and degradation pathways of compounds like 2,6-dimethylocta-5,7-dien-2-ol can provide insights into their environmental persistence and influence on ecosystems.

In summary, 2,6-dimethylocta-5,7-dien-2-ol is more than just a complex name; it represents a vital piece of the puzzle in fields ranging from biochemistry to environmental science. As researchers continue to explore its properties, they may uncover even more applications and benefits from this intriguing compound.

Synonyms
DTXSID4052265
2,6-dimethyl -5,7-octadien-2-ol
DB-355337
NS00013051