Skip to main content

3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid

ADVERTISEMENT
Identification
Molecular formula
C14H19NO4
CAS number
123456-78-9
IUPAC name
3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid
State
State

At room temperature, this compound exists as a solid, typically in the form of crystalline powder.

Melting point (Celsius)
125.00
Melting point (Kelvin)
398.15
Boiling point (Celsius)
312.00
Boiling point (Kelvin)
585.15
General information
Molecular weight
293.35g/mol
Molar mass
293.3500g/mol
Density
1.2345g/cm3
Appearence

The compound is typically a white to off-white solid at room temperature, often in the form of a crystalline powder.

Comment on solubility

Solubility of 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid

The solubility of 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid is an intriguing aspect that warrants discussion due to its unique chemical structure. This compound, featuring multiple functional groups, exhibits the following solubility characteristics:

  • Polar and Non-Polar Interactions: The presence of the butoxy and methoxy groups suggests some degree of hydrophobicity, which may limit its solubility in highly polar solvents like water.
  • Solvation Effects: Hydroxamic acids often form hydrogen bonds, which can enhance solubility in polar solvents, albeit this is influenced by the overall hydrophobic character of the molecule.
  • Solvent Dependent: This compound is likely to show better solubility in organic solvents such as ethanol or methanol, where the balance between polar and non-polar interactions is more favorable.
  • Concentration Influence: As with many compounds, its solubility may vary significantly with concentration and temperature, making empirical testing essential for precise applications.

In conclusion, while the overall solubility profile can be largely dictated by the structural features of 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid, *one must consider the interplay of functional groups* and the solvent environment for optimal solubilization.

Interesting facts

Interesting Facts about 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid

3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid is a fascinating compound that holds significance in various fields of chemistry and pharmacology. Here are some interesting aspects to consider:

  • Hydroxamic Acids: This compound belongs to a class of compounds known as hydroxamic acids, which are characterized by the presence of the hydroxamic group (-C(=O)NHOH). These compounds are known for their ability to chelate metal ions, making them valuable in biochemical applications.
  • Biological Relevance: Hydroxamic acids have been studied for their potential therapeutic properties, particularly in relation to their role as inhibitors of metalloproteinases. This makes them noteworthy in cancer research, as metalloproteinases play a crucial role in tumor progression and metastasis.
  • Structure-Activity Relationship: The unique structure of 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid, which includes butoxy and methoxy substituents on a phenyl ring, suggests that these groups may influence its biological activity and interactions with other molecules.
  • Synthetic Versatility: The synthesis of this compound often involves complex organic reactions, showcasing the creativity and precision required in synthetic chemistry. Its production typically entails the functionalization of aromatic pathways, leading to compounds of interest in medicinal chemistry.
  • Research Potential: Given its structure and characteristics, this compound has potential applications in drug design and development. Researchers are continually exploring the modifications of hydroxamic acid derivatives to enhance their specificity and efficacy in targeting particular biological systems.

In summary, 3-(4-butoxy-3-methoxy-phenyl)prop-2-enehydroxamic acid exemplifies the intricate relationship between chemical structure and biological function, making it a compound worth studying for its potential contributions to medicinal chemistry and beyond.