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Methyldopa

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Identification
Molecular formula
C19H27IN
CAS number
305-86-2
IUPAC name
trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium;iodide
State
State

At room temperature, trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide is in a solid state.

Melting point (Celsius)
145.00
Melting point (Kelvin)
418.15
Boiling point (Celsius)
287.50
Boiling point (Kelvin)
560.65
General information
Molecular weight
297.28g/mol
Molar mass
297.2830g/mol
Density
1.4700g/cm3
Appearence

Trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide, also known as Methyldopa hydriodide, appears as a crystalline solid that is off-white to pale yellow in color. It is typically available as a powder. The compound can have a slight odor characteristic to its chemical nature.

Comment on solubility

Solubility of Trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide

Understanding the solubility of complex compounds such as trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide can be intriguing due to their unique structural and ionic characteristics. Here are several key points regarding its solubility:

  • Solvent Dependence: The solubility of this compound is expected to vary significantly depending on the solvent used. Ionic compounds tend to dissolve well in polar solvents, such as water, due to the ion-dipole interactions.
  • Ionic Nature: As an ammonium iodide, the presence of iodide (I-) suggests that this compound may have reasonable solubility in polar environments. This could facilitate the dissolution process.
  • Hydrophobic Regions: However, the tetracyclo structure introduces significant hydrophobic characteristics, which could impede solubility in highly polar solvents.
  • Concentration Limits: It's also essential to consider the concentration at which the solubility is being assessed; at higher concentrations, interactions may lead to precipitation rather than dissolution.

In essence, while the presence of ionic components usually favors solubility, the complex hydrophobic structures present in trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide may create challenges for dissolution in many common solvents. Further experimental studies would be beneficial to elucidate the exact solubility behavior under various conditions.

Interesting facts

Interesting Facts about Trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium Iodide

This fascinating compound, known as trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide, presents an intriguing blend of organic chemistry and complex molecular architecture. Here are some captivating aspects worth noting:

  • Molecular Complexity: The compound consists of a polycyclic framework combined with a quaternary ammonium moiety, making it a unique example of how versatility and complexity can coexist in a single molecule.
  • Tetracyclic Structure: The "tetracyclo" component indicates a multi-cyclic structure which can have significant implications in terms of stability and reactivity. Such compounds often exhibit unique chemical behavior due to their rigid structure.
  • Applications in Science: Compounds of this nature are frequently explored for their potential use in medicinal chemistry, especially in drug development. The specific orientation and functionality of the cycles can interact with biological targets in interesting ways.
  • Ion Exchange Properties: As it contains an iodide ion, this compound can be utilized in ion exchange reactions, which are essential in various chemical syntheses and purification processes.
  • Research Interest: Chemists are particularly interested in the self-assembly properties of such compounds. Their unique configurations allow for the formation of organized structures which could have implications for materials science and nanotechnology.

In conclusion, the trimethyl-[3-(15-tetracyclo[6.6.2.02,7.09,14]hexadeca-2,4,6,9,11,13-hexaenyl)propyl]ammonium iodide stands as a testament to the incredible diversity and potential of organic compounds. As scientists continue to explore their properties and effects, who knows what groundbreaking applications may emerge from such intricate molecular designs?

Synonyms
9,10-Dihydro-11-(3-dimethylaminopropyl)9,10-ethanoanthracene methyliodide
14692-52-5
(3-(9,10-Dihydro-9,10-ethanoanthracen-11-yl)propyl)trimethylammonium iodide
9,10-Ethanoanthracene, 9,10-dihydro-11-(3-(dimethylamino)propyl)-, methyliodide
AMMONIUM, (3-(9,10-DIHYDRO-9,10-ETHANOANTHRACEN-11-YL)PROPYL)TRIMETHYL-, IODIDE
DTXSID70932965
3-(9,10-dihydro-9,10-ethanoanthracen-11-yl)-N,N,N-trimethylpropan-1-aminium iodide