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Acenaphthylene-5-amine

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Identification
Molecular formula
C12H9NH2
CAS number
65682-58-2
IUPAC name
acenaphthylen-5-amine
State
State

At room temperature, Acenaphthylene-5-amine is in a solid state.

Melting point (Celsius)
168.30
Melting point (Kelvin)
441.50
Boiling point (Celsius)
392.50
Boiling point (Kelvin)
665.70
General information
Molecular weight
167.21g/mol
Molar mass
167.2140g/mol
Density
1.2367g/cm3
Appearence

Acenaphthylene-5-amine appears as a solid at room temperature. Its appearance is typically crystalline and it may appear as colorless to pale yellow crystals.

Comment on solubility

Solubility of Acenaphthylen-5-amine

Acenaphthylen-5-amine, with the chemical formula C12H9N, exhibits distinct solubility characteristics that are essential for understanding its behavior in various environments. Here are some noteworthy points regarding its solubility:

  • Solvent Compatibility: Acenaphthylen-5-amine is known to be soluble in organic solvents such as ethanol and dimethyl sulfoxide (DMSO).
  • Water Solubility: It has limited solubility in water, which is typical for many organic compounds with large hydrophobic structures.
  • Influence of Temperature: The solubility can vary with temperature, increasing in organic solvents as the temperature rises, thereby enhancing its dissolution properties.
  • pH Dependence: The solubility might also be influenced by the pH of the solvent, as protonation can affect the compound's solubility dynamics.

Understanding the solubility of acenaphthylen-5-amine is crucial for its application in various chemical processes and research. As noted, the compound's behavior in different solvents can significantly impact its reactivity, bioavailability, and overall functionality. Thus, when working with acenaphthylen-5-amine, consider these solubility factors to ensure proper experimentation and application outcomes.

Interesting facts

Interesting Facts About Acenaphthylen-5-amine

Acenaphthylen-5-amine is a fascinating compound that belongs to the class of organic compounds known as amines. It showcases the unique chemistry of polycyclic aromatic hydrocarbons (PAHs) with notable implications in various scientific fields. Here are some intriguing facts about this compound:

  • Structure and Stability: As a derivative of acenaphthylene, acenaphthylen-5-amine possesses a fused aromatic ring structure, contributing to its significant stability and aromaticity. This unique structure is a focus of research in material science and organic synthesis.
  • Applications in Chemistry: Due to its amine functional group, acenaphthylen-5-amine is of interest in the synthesis of dyes, pharmaceuticals, and advanced materials. Its ability to act as a nucleophile allows it to participate in numerous chemical reactions.
  • Role in Environmental Chemistry: Compounds similar to acenaphthylen-5-amine are studied for their behavior in the environment, especially regarding their toxicity and potential to form hazardous substances. Understanding these properties is crucial for environmental risk assessment.
  • Biological Activity: Some studies suggest that substituted amines can exhibit biological activity, leading to investigations into the potential medicinal properties of compounds like acenaphthylen-5-amine. This opens avenues for drug discovery and development.
  • Synthetic Versatility: The introduction of the amine group into the acenaphthalene structure is a strategic modification that can enhance the reactivity and functionality of the carbon framework, facilitating diverse synthetic pathways for chemists.

In summary, acenaphthylen-5-amine represents a compelling intersection of organic chemistry, material science, and environmental studies. Its unique properties and potential applications not only highlight the complexity of molecular structures but also illustrate the importance of such compounds in both academic and industrial research.

Synonyms
5-ACENAPHTHYLENAMINE
acenaphthylen-5-amine
4523-49-3
UNII-080ETH9OKD
080ETH9OKD
DTXSID30196440
DTXCID40118931
SCHEMBL4978813
Q27236335