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tropacocaine

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Identification
Molecular formula
C16H21NO2
CAS number
532-10-7
IUPAC name
(9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate
State
State

At room temperature, tropacocaine is typically found as a solid. It is often stored in a powdered form due to its stability and ease of use in this state.

Melting point (Celsius)
50.00
Melting point (Kelvin)
323.00
Boiling point (Celsius)
265.00
Boiling point (Kelvin)
538.00
General information
Molecular weight
259.35g/mol
Molar mass
259.3520g/mol
Density
1.1100g/cm3
Appearence

Tropacocaine typically appears as a white crystalline powder. Depending on the purity and handling, it can sometimes be seen in a slightly off-white to yellowish form. The compound is known for its aesthetic similarities to other tropane alkaloids.

Comment on solubility

Solubility of (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate

The solubility of (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate can be evaluated based on its structural characteristics and the presence of functional groups. As an organic compound, it tends to display solubility behavior that is intricately linked to its molecular properties. Here are some key considerations:

  • Polarity: The acetate group is polar, which can enhance the compound's solubility in polar solvents like water and alcohols.
  • Hydrophobic Interactions: The bicyclic structure and phenyl group can contribute to hydrophobic interactions, potentially limiting solubility in aqueous environments.
  • Temperature Effects: Like many compounds, solubility may increase with temperature, leading to greater dissolution in solvents.

In general, it’s crucial to note that solubility is not just a binary trait. Instead, it often falls on a spectrum influenced by several factors, including the solvent used. As a result, one might find that while (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate is soluble in some organic solvents, it may not be as soluble in others.

Ultimately, the solubility of this compound exemplifies the complexities of molecular interactions, highlighting the dance between polarity and hydrophobicity.

Interesting facts

Interesting Facts about (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) Acetate

(9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate is a fascinating compound that belongs to a class known for their unique structural properties and potential applications in various fields of research. Here are some interesting insights about this compound:

  • Diverse Applications: Compounds similar to (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate are often studied for their potential use in pharmaceuticals, particularly in the development of new medications that target neurological conditions.
  • Structural Complexity: The bicyclic structure of this compound provides it with distinct conformation possibilities that can significantly influence its biological activity. The presence of the nitrogen atom in the bicyclic system adds to its unique reactivity.
  • Synthesis Challenges: The synthesis of such complex organic molecules can be quite challenging. It often involves multiple steps, requiring careful control of reaction conditions to achieve the desired product without unwanted by-products.
  • Analytical Interest: In the realm of analytical chemistry, (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate serves as an intriguing subject for studies involving NMR (Nuclear Magnetic Resonance) and mass spectrometry, techniques that provide insights into the compound's structure and stability.
  • Similarities to Natural Compounds: This compound bears structural resemblance to certain natural alkaloids, which often exhibit potent biological activities, making it an interesting point of study in medicinal chemistry.

In summary, (9-methyl-7-phenyl-9-azabicyclo[3.3.1]nonan-3-yl) acetate stands out for its structural elegance and the potential roles it could play in various scientific explorations. As researchers continue to uncover the mysteries of complex organic compounds, this acetate serves as a notable example of the beauty found within chemical structures.