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Phosphocreatine

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Identification
Molecular formula
C9H21N3O5P
CAS number
67-07-2
IUPAC name
2-(diisopropoxyphosphorylamino)ethyl-[6-[2-(diisopropoxyphosphorylamino)ethyl-dimethyl-ammonio]hexyl]-dimethyl-ammonium
State
State

Solid at room temperature.

Melting point (Celsius)
171.00
Melting point (Kelvin)
444.15
Boiling point (Celsius)
0.00
Boiling point (Kelvin)
0.00
General information
Molecular weight
252.19g/mol
Molar mass
252.1940g/mol
Density
1.0200g/cm3
Appearence

Phosphocreatine is typically a white, crystalline powder.

Comment on solubility

Solubility of 2-(diisopropoxyphosphorylamino)ethyl-[6-[2-(diisopropoxyphosphorylamino)ethyl-dimethyl-ammonio]hexyl]-dimethyl-ammonium

The solubility of 2-(diisopropoxyphosphorylamino)ethyl-[6-[2-(diisopropoxyphosphorylamino)ethyl-dimethyl-ammonio]hexyl]-dimethyl-ammonium in various solvents can be quite fascinating and intricate. This compound includes multiple functional groups that influence its solubility characteristics.

Solubility Characteristics

  • Water Solubility: Generally, ammonium compounds tend to exhibit good water solubility due to ionic interactions.
  • Solvent Interaction: The presence of diisopropoxyphosphoryl groups may enhance solubility in organic solvents, allowing for better integration in non-polar environments.
  • pH Sensitivity: Its solubility might vary with changes in pH, impacting the protonation state of the ammonium groups.
  • Temperature Effects: Like many compounds, higher temperatures may increase solubility, particularly in non-polar solvents.

As a general rule, "the more polar a solvent, the more polar solutes it can dissolve." However, due to the complex structure of this compound, factors such as steric hindrance and molecular size also play vital roles in its overall solubility profile.

Understanding solubility is essential for applications ranging from pharmaceuticals to industrial processes, and this compound is no exception. Its multi-faceted nature makes it an interesting candidate for further investigation in solubility studies.

Interesting facts

Interesting Facts about 2-(diisopropoxyphosphorylamino)ethyl-[6-[2-(diisopropoxyphosphorylamino)ethyl-dimethyl-ammonio]hexyl]-dimethyl-ammonium

This compound presents a fascinating intersection of organic chemistry and medicinal applications, particularly due to its dual role as both a phosphorus-containing compound and a quaternary ammonium compound. Here are some interesting points to consider:

  • Phosphorylation Chemistry: The presence of diisopropoxyphosphoryl moieties in this compound suggests significant reactivity and potential for biological interactions. Phosphorylation is a key modification in many biological systems, influencing enzyme activity, protein-protein interactions, and cellular signaling pathways.
  • Quaternary Ammonium Nature: Being a quaternary ammonium compound, this compound may exhibit surfactant properties, which can be useful in formulations as disinfectants, antimicrobial agents, or permeabilizers. Such properties are attributed to the positive charge of nitrogen, making these compounds cationic surfactants.
  • Therapeutic Potential: The unique structural composition of this compound may imply potential use in therapeutic applications. Targets may include neurological pathways or cellular membranes, potentially offering innovative solutions in drug delivery systems.
  • Design Considerations: The architecture of this compound, specifically with its long hydrocarbon chains and functional groups, illustrates how molecular design can influence solubility, biological activity, and pharmacokinetics. Considerations such as sterics, electronic effects, and spatial arrangement play a crucial role in its efficacy.

In conclusion, 2-(diisopropoxyphosphorylamino)ethyl-[6-[2-(diisopropoxyphosphorylamino)ethyl-dimethyl-ammonio]hexyl]-dimethyl-ammonium showcases the beauty of synthetic organic chemistry and its applications in both research and industry. Investigating compounds like this one can lead to breakthroughs in various scientific fields, blending chemistry with real-world applications.