Skip to main content

Diquat dibromide

ADVERTISEMENT
Identification
Molecular formula
C12H12N2
CAS number
85-00-7
IUPAC name
(2-acetoxy-2-cyano-cyclohexyl)methyl-[2-[4-[4-[2-[(2-acetoxy-2-cyano-cyclohexyl)methyl-dimethyl-ammonio]-2-oxo-ethyl]phenyl]phenyl]acetyl]-dimethyl-ammonium
State
State

The compound is typically found as a crystalline solid at room temperature.

Melting point (Celsius)
251.00
Melting point (Kelvin)
524.15
Boiling point (Celsius)
406.00
Boiling point (Kelvin)
679.15
General information
Molecular weight
184.26g/mol
Molar mass
344.0590g/mol
Density
1.2200g/cm3
Appearence

The compound appears as a pale yellow crystalline solid. It is typically found as a powder or in granular form. This compound is sensitive to light and humidity.

Comment on solubility

Solubility of (2-acetoxy-2-cyano-cyclohexyl)methyl-[2-[4-[4-[2-[(2-acetoxy-2-cyano-cyclohexyl)methyl-dimethyl-ammonio]-2-oxo-ethyl]phenyl]phenyl]acetyl]-dimethyl-ammonium

The solubility of complex compounds such as (2-acetoxy-2-cyano-cyclohexyl)methyl-[2-[4-[4-[2-[(2-acetoxy-2-cyano-cyclohexyl)methyl-dimethyl-ammonio]-2-oxo-ethyl]phenyl]phenyl]acetyl]-dimethyl-ammonium can vary significantly depending on several factors. Here are some key points to consider:

  • Polarity: The presence of polar functional groups like -OAc (acetoxy) and -N(CH3)2 (dimethylammonio) indicates that the compound may exhibit a reasonable degree of solubility in polar solvents such as water.
  • Hydrophobic Regions: The cyclohexyl structure and multiple phenyl rings are likely to create hydrophobic domains, which could reduce solubility in aqueous media, thereby necessitating the use of organic solvents for effective dissolution.
  • Salt Formation: The ammonium group suggests potential for salt formation, which can enhance solubility in certain environments, particularly when interacting with counterions.
  • Temperature Influence: Solubility is also temperature-dependent; increasing temperature can improve solubility for many compounds, especially those with solid-state lattices.

In conclusion, the solubility of this compound will likely require careful consideration of the solvent environment and possibly additional solubilizing agents to achieve desired concentrations for practical applications. In the words of chemists, finding the "right mix" can often be the key to unlocking the potential of complex compounds.

Interesting facts

Interesting Facts about (2-acetoxy-2-cyano-cyclohexyl)methyl-[2-[4-[4-[2-[(2-acetoxy-2-cyano-cyclohexyl)methyl-dimethyl-ammonio]-2-oxo-ethyl]phenyl]phenyl]acetyl]-dimethyl-ammonium

This compound is a fascinating member of a larger class of organic molecules known for their intricate structures and diverse functionalities in chemistry. Its complexity arises from the presence of multiple functional groups, making it particularly interesting for several reasons:

  • Versatile Applications: This compound may serve as a precursor for various pharmaceutical applications, where it could be leveraged for its biological activity.
  • Chemical Stability: The presence of both acetoxy and cyano groups contributes to the stability and reactivity of the compound, suggesting potential uses in synthesis and catalysis.
  • Structural Complexity: With multiple cyclic and acyclic components, this compound offers a wonderful study in stereochemistry and conformation, making it a perfect target for molecular modeling.
  • Intermolecular Interactions: The ionic ammonium groups within the structure indicate that it might interact with biological membranes or macromolecules, which is of great interest in drug design.

The unique combination of aromatic rings also hints at potential photonic properties, which could be explored for applications in materials science. According to renowned chemist "The beauty of chemistry lies in its ability to create structures that challenge our understanding of functional diversity."

In conclusion, (2-acetoxy-2-cyano-cyclohexyl)methyl-[2-[4-[4-[2-[(2-acetoxy-2-cyano-cyclohexyl)methyl-dimethyl-ammonio]-2-oxo-ethyl]phenyl]phenyl]acetyl]-dimethyl-ammonium is not only an example of structural ingenuity but also a beacon for future research in chemical and medicinal fields.