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Vecuronium bromide

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Identification
Molecular formula
C34H57BrN2O4
CAS number
50700-72-6
IUPAC name
2-[2-[2-[diethyl(methyl)ammonio]ethoxyimino]ethylideneamino]oxyethyl-diethyl-methyl-ammonium;diiodide
State
State
At room temperature, vecuronium bromide is typically handled as a solid powder. Upon reconstitution, it becomes a clear, colorless solution.
Melting point (Celsius)
75.00
Melting point (Kelvin)
348.15
Boiling point (Celsius)
230.00
Boiling point (Kelvin)
503.15
General information
Molecular weight
637.48g/mol
Molar mass
637.4750g/mol
Density
1.7400g/cm3
Appearence
Vecuronium bromide is typically found as a white to off-white powder. It is highly soluble in water and has a neutral pH when in solution. This compound is used as a muscle relaxant in anesthesia.
Comment on solubility

Solubility of 2-[2-[2-[diethyl(methyl)ammonio]ethoxyimino]ethylideneamino]oxyethyl-diethyl-methyl-ammonium;diiodide

The solubility of the compound 2-[2-[2-[diethyl(methyl)ammonio]ethoxyimino]ethylideneamino]oxyethyl-diethyl-methyl-ammonium;diiodide, a quaternary ammonium salt, can be influenced by various factors including the following:

  • Polarity: Being a quaternary ammonium compound, it exhibits high polarity due to the presence of the ammonium ions. This often leads to increased solubility in polar solvents.
  • Solvent Selection: The compound is expected to dissolve readily in water and other polar solvents, while its solubility in organic solvents may be lower. Common solvents include:
    • Water
    • Alcohols
    • Aqueous solutions of acids or salts
  • Temperature Effect: Increased temperature generally enhances the solubility of ionic compounds; thus, heating the solution may improve the dissolution of this diiodide salt.
  • Concentration Dependencies: At varying concentrations, the compound might exhibit different solubility limits, leading to saturation at higher concentrations.

In conclusion, understanding the solubility characteristics of this compound is essential for its practical applications, particularly in fields like drug formulation or chemical synthesis. As always, it is crucial to conduct specific solubility tests under controlled conditions to obtain accurate data.

Interesting facts

Interesting Facts about 2-[2-[2-[diethyl(methyl)ammonio]ethoxyimino]ethylideneamino]oxyethyl-diethyl-methyl-ammonium;diiodide

This compound, with its complex structure, presents a myriad of opportunities for exploration in the field of chemistry. Here are some fascinating aspects:

  • Structural Diversity: Its intricate arrangement includes multiple functional groups, making it a prime candidate for studying various chemical interactions. The presence of ethoxyimino and ammonium groups allows for unique reactivity patterns.
  • Applications in Research: Compounds like this one are often investigated for their potential applications as ionic liquids, surfactants, or even in drug delivery systems due to their amphiphilic properties.
  • Ammonium Compounds: The diethyl(methyl)ammonio component makes it notable for its potential as a phase transfer catalyst, which can facilitate the movement of ions across boundaries in heterogeneous systems.
  • Halides in Chemistry: The presence of diiodide ions suggests interesting properties related to ionic strength and stability, which could influence solubility and reactivity in various solvents.

In summary, the study of this compound can lead to greater insights into:

  1. Innovative chemical synthesis techniques.
  2. Modern applications in materials science.
  3. Understanding the behavior of complex molecular structures.

As one researcher put it, "The beauty of chemistry lies in the complexity of compounds and their capacity to surprise us with their functionalities." This compound certainly embodies that beauty, making it an exciting subject for further research.