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Trimebutine

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Identification
Molecular formula
C22H29NO2
CAS number
34140-59-5
IUPAC name
ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium
State
State

At room temperature, trimebutine is typically in a solid state due to its crystalline form. It is used in pharmaceutical applications primarily in this form.

Melting point (Celsius)
132.00
Melting point (Kelvin)
405.15
Boiling point (Celsius)
308.50
Boiling point (Kelvin)
581.65
General information
Molecular weight
387.57g/mol
Molar mass
387.5710g/mol
Density
1.0900g/cm3
Appearence

Trimebutine appears as a white to off-white crystalline powder. It is odorless and has a slightly bitter taste. The compound is soluble in alcohols like methanol and ethanol, and partially soluble in water.

Comment on solubility

Solubility of Ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium

The solubility of ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium can be influenced by several factors, including its molecular structure and the presence of functional groups. Understanding its solubility is essential for predicting its behavior in various chemical environments.

Factors Influencing Solubility

  • Molecular Size: Larger molecules typically have lower solubility due to steric hindrance, which affects how they interact with solvent molecules.
  • Polarity: This compound’s polarity will play a significant role. Polar compounds tend to dissolve well in polar solvents like water, while non-polar compounds prefer non-polar solvents.
  • Hydrogen Bonding: The ability to form hydrogen bonds can greatly increase solubility in polar solvents. If hydrophilic functional groups are present, expect better solubility.
  • Temperature: Generally, increasing temperature can enhance solubility, especially for solid compounds.

Expected Solubility Characteristics

Generally speaking, the solubility of ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium will likely be:

  • Moderate to Low: Due to its bulky diphenyl groups which may hinder interactions with water molecules.
  • Soluble in Organic Solvents: It may show a higher solubility in non-polar or slightly polar organic solvents.
  • Temperature Dependent: Higher temperatures might enhance solubility, especially in organic media.

In conclusion, while the exact solubility can vary, a balanced consideration of the factors outlined above will provide a clearer understanding of how ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium behaves in different solvents.

Interesting facts

Interesting Facts About Ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium

Ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium is a fascinating compound with diverse applications, particularly in the fields of organic chemistry and materials science. Here are some intriguing aspects worth noting:

  • Quaternary Ammonium Ion: This compound belongs to a class of quaternary ammonium salts, which are known for their ability to act as surfactants. Their unique structure allows them to interact with both hydrophilic and hydrophobic environments, making them useful in various formulations.
  • Purpose: Often utilized in ionic liquids, which are solvents in green chemistry, this compound can facilitate reactions that are otherwise challenging to execute effectively. Ionic liquids are appreciated for their low volatility and thermal stability.
  • Biological Significance: Compounds like ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium can exhibit antibacterial properties. Their quaternary structure interacts with cell membranes, presenting a route for potential antimicrobial therapy.
  • Research Opportunities: Researchers are continually exploring new derivatives of quaternary ammonium compounds, evaluating their potential as catalysts, electrolytes, and in drug delivery systems. The ongoing modifications to their structures can lead to even more effective applications.
  • Environmental Impact: The role of such compounds in environmental science cannot be understated. As sustainable practices become increasingly crucial, examining the biodegradability and eco-toxicity of these compounds is essential for ensuring safety in applications.

In summary, ethyl-dimethyl-(1-methyl-3,3-diphenyl-propyl)ammonium is more than a mere chemical entity. Its distinct properties and versatile applications in various scientific fields provoke a sense of curiosity and interest in its study. Indeed, as scientists delve deeper into its characteristics, new potentials will undoubtedly emerge.

Synonyms
EMEPRONIUM
Emepronium ion
Emepronium cation
27892-33-7
04QQ8SWA4U
DTXSID701021634
Benzenepropanaminium, N-ethyl-N,N,alpha-trimethyl-gamma-phenyl-
RefChem:136620
DTXCID001506643
(4,4-diphenylbutan-2-yl)(ethyl)dimethylazanium
4,4-diphenylbutan-2-yl-ethyl-dimethylazanium
Emepronum
UNII-04QQ8SWA4U
EMEPRONIUM [WHO-DD]
SCHEMBL149747
CHEMBL2110805
DTXSID50863223
CHEBI:135169
DB13505
NS00068033
N-ethyl-N,N-dimethyl-4,4-diphenylbutan-2-aminium
Q27247669
ETHYLDIMETHYL(1-METHYL-3,3-DIPHENYLPROPYL)AMMONIUM