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DBCO-Amine

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Identification
Molecular formula
C24H34N2O4
CAS number
/
IUPAC name
N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide
State
State

At room temperature, N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide is typically in a solid state. This compound has a moderate level of hydration and remains stable under standard conditions.

Melting point (Celsius)
156.00
Melting point (Kelvin)
429.15
Boiling point (Celsius)
451.80
Boiling point (Kelvin)
724.95
General information
Molecular weight
401.54g/mol
Molar mass
401.5390g/mol
Density
1.1500g/cm3
Appearence

N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide typically appears as a crystalline solid. Its color ranges from a pale yellow to an off-white hue, depending on purity and specific batch characteristics.

Comment on solubility

Solubility of N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide

This compound, N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide, exhibits unique solubility properties that can be attributed to its structural characteristics. Let's take a closer look:

  • Polarity: The presence of both hydrophilic (water-attracting) and hydrophobic (water-repelling) groups suggests that the compound might be soluble in various solvents. This dual nature allows it to interact with both polar and nonpolar environments.
  • Solvent Compatibility: It is likely to be soluble in:
    • Polar solvents: such as water or alcohol, due to the hydroxyl group (-OH) present in the structure.
    • Nonpolar solvents: like hexane or chloroform, because of the dibutylamino group that adds significant hydrophobic character.
  • Concentration & Temperature: Solubility may also vary with changes in concentration and temperature. As a general rule:
    • Higher temperatures often increase solubility, especially with organic compounds.
    • Increased concentration of the solvent can lead to saturation, impacting overall solubility as well.

Understanding the solubility of this compound is crucial, particularly in applications involving pharmaceuticals, as the solubility can significantly influence bioavailability and therapeutic effectiveness. It’s important to conduct further experiments to determine the precise solubility values in various solvents to fully leverage the potential this compound holds.

Interesting facts

Interesting Facts about N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide

N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide is an intriguing chemical compound that belongs to the class of chromene derivatives. Here are some fascinating points about this compound:

  • Chromene Structure: This compound is based on the chromene structure, which is well-known for its role in various biological activities. Chromenes are often found in plant pigments and natural products.
  • Potential Biological Activity: The presence of dibutylamino and carboxamide functionalities suggests that this compound may exhibit unique pharmacological properties. Research into similar compounds has shown potential as:
    • Antioxidants
    • Anticancer agents
    • Anti-inflammatory compounds
  • Diverse Applications: The unique combination of functional groups in this compound may lead to applications in various fields, including:
    • Pharmaceuticals
    • Chemical sensors
    • Material science
  • Synthesis Challenges: The synthesis of this compound could involve multiple steps, highlighting its structural complexity. Chemists may work on optimizing routes to improve yields and reduce costs.
  • Research Frontiers: This compound is a subject of ongoing research, where scientists are exploring:
    • Its mechanisms of action
    • Understanding structure-activity relationships
    • Investigating its role in drug development

Overall, N-[4-(dibutylamino)butyl]-2-hydroxy-8-methyl-4-oxo-chromene-3-carboxamide stands out as a compound with a multifaceted chemical profile, which promises exciting avenues for research and application in modern chemistry.