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Propitocaine

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Identification
Molecular formula
C13H20FNO2
CAS number
721-50-6
IUPAC name
2-(dipropylamino)ethyl 4-fluorobenzoate
State
State

At room temperature, Propitocaine typically exists as a liquid. It is often utilized in its hydrochloride salt form for medical applications.

Melting point (Celsius)
36.00
Melting point (Kelvin)
309.15
Boiling point (Celsius)
364.40
Boiling point (Kelvin)
637.55
General information
Molecular weight
247.31g/mol
Molar mass
246.3320g/mol
Density
1.0000g/cm3
Appearence

Propitocaine is typically a colorless to pale yellow, oily liquid. It has a characteristic odor and is often supplied in a liquid form for pharmaceutical use.

Comment on solubility

Solubility of 2-(dipropylamino)ethyl 4-fluorobenzoate

The solubility of 2-(dipropylamino)ethyl 4-fluorobenzoate in water can be influenced by several factors, including its molecular structure and functional groups. This compound features both hydrophobic and hydrophilic components:

  • Hydrophobic component: The dipropylamino chain contributes to non-polar characteristics, which typically impedes solubility in water.
  • Hydrophilic component: The presence of the benzoate moiety may enhance its solubility to some extent due to its polar nature.

As a result, the solubility of 2-(dipropylamino)ethyl 4-fluorobenzoate in water is expected to be:

  • Low due to the large hydrophobic dipropyl groups.
  • Potentially higher in organic solvents like ethanol or DMSO due to better interaction with similar polar structures.

In practical applications, it's crucial to consider solvent choice based on the solubility characteristics. As a guiding principle, "Like dissolves like" is particularly relevant in predicting the behavior of such compounds. Overall, while this compound may not readily dissolve in aqueous solutions, it holds potential for solubility in more organic media, impacting its usability in various chemical processes.

Interesting facts

Interesting Facts about 2-(Dipropylamino)ethyl 4-Fluorobenzoate

2-(Dipropylamino)ethyl 4-fluorobenzoate is a fascinating compound in the realm of organic chemistry. Here are some intriguing details:

  • Pharmaceutical Applications: This compound is often discussed in relation to its potential use in the pharmaceutical industry. Its structure hints at possible interactions with biological systems, making it a candidate for further investigation in drug development.
  • Structure and Function: The unique combination of the dipropylamino group with a fluorobenzoate moiety offers interesting electronic properties. The 4-fluorobenzoate segment may enhance the compound's reactivity and stability, which are vital in pharmaceutical contexts.
  • Mechanism of Action: Compounds similar to 2-(dipropylamino)ethyl 4-fluorobenzoate are often studied for their mechanisms of action, particularly in terms of neurotransmitter activity. Understanding how such compounds interact at the molecular level can provide insight into their therapeutic potential.
  • Fluorine's Role: The presence of fluorine in organic compounds is known to alter their biological properties. Fluorine atoms can enhance metabolic stability and lipophilicity, making such compounds more effective in their respective functions.
  • Research Interest: As researchers continually look for novel compounds with improved efficacy and reduced side effects, compounds like 2-(dipropylamino)ethyl 4-fluorobenzoate present exciting opportunities for innovation in drug discovery.

In summary, 2-(dipropylamino)ethyl 4-fluorobenzoate is not just a compound; it's a doorway to further scientific exploration. Its unique combination of structural elements opens up a myriad of possibilities in research and application. As the landscape of medicinal chemistry evolves, compounds like this one could play pivotal roles in future therapeutic advancements.