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Epoxy linolenic acid

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Identification
Molecular formula
C18H30O3
CAS number
NULL
IUPAC name
4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid
State
State

At room temperature, the compound is in a liquid state. Due to its unsaturated chain and epoxy group, it remains as a viscous liquid under ambient conditions.

Melting point (Celsius)
-5.00
Melting point (Kelvin)
268.15
Boiling point (Celsius)
250.00
Boiling point (Kelvin)
523.15
General information
Molecular weight
294.45g/mol
Molar mass
294.4520g/mol
Density
1.0300g/cm3
Appearence

Epoxy linolenic acid typically appears as a colorless to pale yellow liquid. It is clear and oily in nature.

Comment on solubility

Solubility of 4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid

The solubility of 4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid (C18H30O3) can be influenced by several factors, primarily its structure and the presence of functional groups that interact with solvents.

Factors Affecting Solubility:

  • Hydrophobicity: Given the long carbon chain (tetradecyl) in its structure, this compound likely exhibits significant hydrophobic characteristics, leading to limited solubility in polar solvents such as water.
  • Functional Groups: The presence of the carboxylic acid group (–COOH) can enhance solubility in polar solvents via hydrogen bonding.
  • Temperature: Increased temperature can enhance solubility by increasing molecular motion, aiding dissolution.
  • Steric Hindrance: The branching and double bonds in the chain may affect how well the compound can fit into the solvent environment, potentially affecting solubility.

As a general observation, we can state that:

  • This compound is expected to be more soluble in organic solvents such as ethanol or ether than in water.
  • Its overall solubility will likely depend on the balance between the hydrophobic hydrocarbon chain and the hydrophilic carboxylic acid functional group.

In conclusion, while the compound is anticipated to have limited solubility in aqueous solutions, it may dissolve more readily in non-polar or slightly polar organic solvents, making its behavior interesting for applications in organic chemistry and materials science.

Interesting facts

Exploring 4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid

4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid is a fascinating compound in the realm of organic chemistry, primarily due to its unique structure and the potential applications it may hold. Here are some compelling aspects of this compound:

  • Structural Complexity: The compound features an oxirane ring, which is a three-membered cyclic ether. This structural element can greatly influence the compound's reactivity and properties.
  • Long Chain Hydrocarbon: With a tetradecyl group that includes a series of double bonds, this molecule exhibits characteristics common in unsaturated fatty acids. The presence of double bonds can enhance interactions with other molecules, making it a subject of study in lipid chemistry.
  • Biochemical Significance: Compounds like this one can serve as intermediates in the synthesis of bioactive molecules. Scientists often explore such structures for their potential in pharmaceuticals and materials science.
  • Versatile Functionalities: The butanoic acid moiety introduces a carboxylic acid functional group, known for its ability to form salts and esters, contributing to the versatility of the compound in synthetic applications.

The arrangement of its functional groups enables scientists to draw interesting parallels between this compound and various biological and chemical processes, making it a significant topic for further exploration in both academic and industrial chemistry. One can ponder how the distinct traits of 4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid could be harnessed in innovative ways:

"The study of such organic compounds opens avenues not only in basic research but also in practical applications, from drug design to materials engineering."

In summary, 4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid represents a bridge between intricate molecular architecture and practical usage, offering a wealth of opportunities for discovery in the chemical sciences.

Synonyms
5,6-epoxyeicosa-8,11,14-trienoic acid
81246-84-6
4-[3-(tetradeca-2,5,8-trien-1-yl)oxiran-2-yl]butanoic acid
CBiol_001855
KBioGR_000167
KBioSS_000167
4-(3-tetradeca-2,5,8-trienyloxiran-2-yl)butanoic acid
KBio2_000167
KBio2_002735
KBio2_005303
KBio3_000333
KBio3_000334
DTXSID20868604
Bio1_000141
Bio1_000630
Bio1_001119
Bio2_000167
Bio2_000647
87173-80-6