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Butylphenyl morpholino ethoxyphenol

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Identification
Molecular formula
C17H25NO4
CAS number
1640-39-7
IUPAC name
1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one
State
State

The compound is typically found as a crystalline solid at room temperature, characterized by its stability and moderate solubility in organic solvents.

Melting point (Celsius)
85.00
Melting point (Kelvin)
358.15
Boiling point (Celsius)
606.50
Boiling point (Kelvin)
879.70
General information
Molecular weight
309.39g/mol
Molar mass
309.3930g/mol
Density
1.1810g/cm3
Appearence

The compound appears as a white powder. It is commonly used in applications where UV absorption is needed, such as in sunscreens and certain plastic products to prevent degradation.

Comment on solubility

Solubility of 1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one

The solubility of the compound 1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one is influenced by several factors due to its complex structure. Generally, compounds with a combination of hydrophobic and hydrophilic functional groups, such as this one, exhibit interesting solubility behavior:

  • Hydrophilicity: The presence of the -OH (hydroxyl) group significantly increases the compound’s affinity for water, promoting solubility in polar solvents.
  • Hydrophobicity: Conversely, the butan-1-one and morpholinoethoxy portions impart hydrophobic characteristics, potentially limiting solubility in aqueous environments.
  • Solvent Interaction: This compound may demonstrate better solubility in organic solvents such as ethanol, methanol, or dimethyl sulfoxide (DMSO), where solvation through van der Waals interactions can occur more readily.

Considering these features, it is crucial to note that the balance between hydrophilic and hydrophobic components can lead to variability in solubility depending on the solvent used. Factors such as temperature and pH can also have significant effects, altering the ionization state of the hydroxyl group, which further impacts solubility.

In practical applications, understanding the solubility profile of this compound is essential for formulation processes, especially in pharmaceutical and chemical contexts. As the common adage goes, "like dissolves like"; hence, selecting the appropriate solvent will enhance its practical usability.

Interesting facts

Interesting Facts about 1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one

1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one, commonly referred to in scientific circles for its intriguing structure and potential applications, is an organic compound that showcases the fascinating intersection of chemistry and therapeutic development. Here are some engaging insights into this compound:

Chemical Structure and Functionality

This compound boasts a unique structure that incorporates several functional groups, enhancing its reactivity and potential therapeutic uses:

  • Hydroxyl Group: The presence of the hydroxyl group (-OH) suggests potential for hydrogen bonding, which can influence solubility and biological activity.
  • Morpholino Ethoxy Group: This group may foster interactions with molecular targets, potentially aiding in drug design and development.
  • Butanone Backbone: The butanone moiety provides a stable framework for the molecule, potentially contributing to cohesive interactions with other compounds.

Potential Applications

Given its structural characteristics, 1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one could find relevance in various fields:

  • Pharmaceutical Development: The compound may exhibit biological activity, making it a candidate for further study in the design of new pharmaceuticals.
  • Research Tools: Its complex structure might be utilized in biological assays to investigate receptor interactions and cellular mechanisms.
  • Analytical Chemistry: The compound can serve as a standard for characterization in chromatographic techniques.

Scientific Perspective

From a chemist's viewpoint, understanding the intricate relationships within this compound’s structure is essential. It provides an opportunity to:

  • Explore molecular interactions and how they affect biological systems.
  • Investigate synthetic pathways that could lead to more complex derivatives.
  • Analyze the compound's attributes in relation to established chemical principles such as sterics and electronics.

In conclusion, 1-[2-hydroxy-4-(2-morpholinoethoxy)phenyl]butan-1-one is not just a chemical entity; it embodies the quest for innovation in modern chemistry and biology. As research continues, its potential could unlock new horizons in therapeutic applications!