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2,5-Diethylphenol

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Identification
Molecular formula
C10H14O
CAS number
138-37-4
IUPAC name
2,5-diethylphenol
State
State

At room temperature, 2,5-Diethylphenol is a liquid.

Melting point (Celsius)
17.00
Melting point (Kelvin)
290.15
Boiling point (Celsius)
228.00
Boiling point (Kelvin)
501.15
General information
Molecular weight
150.22g/mol
Molar mass
150.2170g/mol
Density
0.9829g/cm3
Appearence

2,5-Diethylphenol is a colorless to pale yellow liquid with a characteristic phenolic odor. It tends to darken upon exposure to air and light.

Comment on solubility

Solubility of 2,5-Diethylphenol

2,5-Diethylphenol, with the chemical formula C12H16O, exhibits intriguing solubility properties that are characteristic of its structure. Understanding its solubility is essential for applications in various chemical processes.

Solubility Characteristics

  • Polar vs. Non-Polar: As a compound with both a phenolic hydroxyl group and long ethyl chains, 2,5-diethylphenol is weakly polar. This dual nature affects its solubility in different solvents.
  • Solvents: It is generally more soluble in organic solvents such as ethanol and ether due to the hydrophobic ethyl groups, while its solubility in water is relatively low.
  • Temperature Dependency: As with many organic compounds, the solubility of 2,5-diethylphenol can increase with temperature; higher temperatures often enhance the solubility in organic solvents.

In summary, while 2,5-diethylphenol displays moderate solubility in non-polar organic solvents, its interaction with polar solvents like water is limited. Its solubility profile is crucial for chemists when considering its applications in synthesis, extraction, and other chemical reactions.

Interesting facts

Interesting Facts about 2,5-Diethylphenol

2,5-Diethylphenol is a fascinating organic compound that belongs to the class of phenolic compounds. Here are some intriguing details that highlight its significance in the chemical world:

  • Structure and Substitution: This compound features two ethyl groups attached to the aromatic ring at the 2 and 5 positions, making it a valuable example of substituted phenols. The specific positioning of these groups influences its chemical reactivity and interactions with other substances.
  • Industrial Applications: 2,5-Diethylphenol is often utilized as an industrial intermediate in the synthesis of various chemicals, particularly in the manufacturing of plastics, agricultural chemicals, and pharmaceuticals.
  • Acting as an Antioxidant: The presence of the hydroxyl group in its molecular structure grants 2,5-diethylphenol antioxidant properties. This characteristic makes it an important candidate for further research in the field of materials chemistry.
  • Biological Aspects: Research suggests that phenolic compounds, including 2,5-diethylphenol, may exhibit various biological activities. Investigations are underway to explore its potential as a bioactive agent against certain pathogens and its effects in broader biochemical applications.
  • Environmental Considerations: As with many synthetic compounds, the environmental behavior of 2,5-diethylphenol is significant. Studies into its biodegradability and ecological impact are crucial for understanding how such compounds interact with the environment.
  • Chemical Reactions: The reactivity of 2,5-Diethylphenol allows it to participate in various electrophilic aromatic substitutions, making it a subject of interest for organic synthesis and mechanistic studies in the laboratory.

In conclusion, 2,5-diethylphenol embodies the complex interplay of structure, reactivity, and applications found in organic chemistry. Its unique characteristics not only deepen our understanding of phenolic compounds but also open the door to potential innovation in multiple fields.

Synonyms
2,5-Diethylphenol
Phenol, 2,5-diethyl-
XQ1WLB600M
876-20-0
UNII-XQ1WLB600M
RefChem:82834
AQFCDVGUEQOTAC-UHFFFAOYSA-N
2,5diethylphenol
SCHEMBL593741
SCHEMBL2862097
DTXSID601043546
MB23814
NS00010672