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Vecuronium bromide

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Identification
Molecular formula
C34H57BrN2O4
CAS number
50700-72-6
IUPAC name
2-[2-(butylcarbamoyloxy)ethyl-(2-phenylethyl)amino]ethyl N-butylcarbamate
State
State

At room temperature, vecuronium bromide is supplied as a solid powder form. However, it is most commonly used in a reconstituted liquid form for intravenous injection in medical procedures.

Melting point (Celsius)
174.00
Melting point (Kelvin)
447.20
Boiling point (Celsius)
357.20
Boiling point (Kelvin)
630.30
General information
Molecular weight
637.90g/mol
Molar mass
637.9000g/mol
Density
1.7240g/cm3
Appearence

Vecuronium bromide appears as a white or off-white, fine powder. It is usually supplied as a lyophilized powder that needs to be reconstituted in a suitable solvent before use. The commercial form of vecuronium is typically designed for use in a medical setting, especially for intravenous administration.

Comment on solubility

Solubility of 2-[2-(butylcarbamoyloxy)ethyl-(2-phenylethyl)amino]ethyl N-butylcarbamate

The solubility of 2-[2-(butylcarbamoyloxy)ethyl-(2-phenylethyl)amino]ethyl N-butylcarbamate is influenced by its molecular structure and interactions with solvents. Due to its complex nature, one can consider the following factors:

  • Polarity: The presence of polar functional groups can enhance solubility in polar solvents, while non-polar characteristics may favor solubility in non-polar solvents.
  • Hydrogen Bonding: This compound's ability to form hydrogen bonds can greatly affect its interactions with water, thereby impacting its solubility.
  • Molecular Size: Larger molecules often exhibit lower solubility in solvents due to increased steric hindrance and decreased surface area for interaction.
  • Temperature Dependence: Solubility can vary significantly with temperature, as increased kinetic energy can lead to better solvation of solute molecules.

In general, compounds with a structure similar to 2-[2-(butylcarbamoyloxy)ethyl-(2-phenylethyl)amino]ethyl N-butylcarbamate may show limited solubility in water while being more soluble in organic solvents. This is mainly due to the presence of lipophilic moieties that enhance interaction with non-polar environments. As with any chemical, it is essential to evaluate the specific solubility profile through experimental methods, noting any variances under altered conditions.

Interesting facts

Interesting Facts about 2-[2-(butylcarbamoyloxy)ethyl-(2-phenylethyl)amino]ethyl N-butylcarbamate

This intriguing compound showcases the complexity and versatility of organic chemistry. It features multiple functional groups, making it a compound of interest for both academic research and practical applications. Below are some fascinating insights about it:

  • Design & Structure: The molecular structure is characterized by an interesting interplay between amine and carbamate functional groups. This duality can lead to diverse interactions in biological systems.
  • Applications: Due to its structure, this compound is being explored for use in pharmaceuticals, such as potential drug formulation or targeting specific pathways in biological processes.
  • Biological Relevance: The incorporation of the butylcarbamate moiety often enhances the bioavailability and bioactivity of compounds in medicinal chemistry, making it a valuable scaffold in drug development.
  • Synthesis Insights: The synthesis of such compounds typically involves intricate multi-step reactions, highlighting the creativity and precision required in modern organic synthesis.
  • Research Potential: Ongoing research could reveal novel insights into the interactions of this compound, potentially leading to new therapeutic approaches or insights into pharmacodynamics and pharmacokinetics.

As you delve deeper into the world of organic compounds, remember the words of famous chemist Linus Pauling: "The best way to have a good idea is to have a lot of ideas." This compound is a testament to that notion—its complex design and the possibilities it holds for further research demonstrate the endless creativity imbued in the chemical sciences.