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N,N'-di(acridin-9-yl)decane-1,10-diamine

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Identification
Molecular formula
C38H38N4
CAS number
104630-23-3
IUPAC name
N,N'-di(acridin-9-yl)decane-1,10-diamine
State
State

At room temperature, N,N'-di(acridin-9-yl)decane-1,10-diamine is a solid, often forming as specialty crystals due to its aromatic nature. It is generally handled in a powdered or crystalline form in chemical laboratories or industrial applications.

Melting point (Celsius)
233.00
Melting point (Kelvin)
506.15
Boiling point (Celsius)
446.90
Boiling point (Kelvin)
720.05
General information
Molecular weight
526.66g/mol
Molar mass
526.6680g/mol
Density
1.1340g/cm3
Appearence

N,N'-di(acridin-9-yl)decane-1,10-diamine typically appears as a crystalline solid. It can exhibit various colors including yellow, orange, or even blue, depending on the crystal structure and the presence of any solvates or contaminants. The compound may also show fluorescence under ultraviolet light because of the acridine rings in its structure.

Comment on solubility

Solubility of N,N'-di(acridin-9-yl)decane-1,10-diamine

N,N'-di(acridin-9-yl)decane-1,10-diamine exhibits intriguing solubility characteristics that can significantly affect its application in various fields. The molecular structure, particularly the long hydrocarbon chain of decane and the aromatic acridine rings, contributes to its solubility behavior.

Factors Influencing Solubility

Several factors play a role in determining the solubility of this compound:

  • Hydrophobicity: The long carbon chain enhances hydrophobic interactions, making the compound less soluble in polar solvents like water.
  • π-π Interactions: The presence of multiple acridine moieties can lead to significant π-π stacking, potentially affecting solubility in organic solvents.
  • Chain Length: Longer aliphatic chains typically increase hydrophobic interaction, thereby contributing to lower solubility in polar solvents.

When considering solubility, it is essential to note:

  • The compound is likely to be more soluble in organic solvents such as chloroform, dichloromethane, or ethanol.
  • It may show limited solubility in aqueous environments, which can be crucial for specific applications in biological systems.

In conclusion, the solubility of N,N'-di(acridin-9-yl)decane-1,10-diamine is a complex interplay of its structural features. Understanding these solubility characteristics is vital for its deployment in research and industry, particularly in fields like materials science and medicinal chemistry.

Interesting facts

Interesting Facts About N,N'-di(acridin-9-yl)decane-1,10-diamine

N,N'-di(acridin-9-yl)decane-1,10-diamine is a fascinating compound that bridges the realms of organic chemistry and material science. Here are some noteworthy aspects:

  • Structural Intrigue: This compound features a unique structure where two acridine moieties are linked by a decane chain. Acridine is known for its fluorescence properties, which can be harnessed in various applications, including dye-sensitized solar cells and in the development of fluorescent probes.
  • Biological Significance: Acridine derivatives have been studied for their roles in pharmaceutical applications, particularly in the treatment of cancer. They can intercalate into DNA, making them potential candidates for therapeutic agents.
  • Versatile Applications: The compound's ability to modify its electronic properties makes it a candidate for use in organic light-emitting diodes (OLEDs) and as a building block in organic semiconductors.
  • Research Potential: Due to its dual-functionality as both a diamine and an acridinyl compound, it can serve as a key component in developing new polymers or advanced materials for sensors and electronic devices.
  • Complex Chemistry: The synthesis of N,N'-di(acridin-9-yl)decane-1,10-diamine may involve challenging multi-step processes requiring precise conditions and reagents, showcasing the complexity and creativity of chemical syntheses.

"Understanding the intricacies of compounds like N,N'-di(acridin-9-yl)decane-1,10-diamine expands our horizons in both fundamental and applied chemistry."

This compound exemplifies the intersection of innovation and application, making it an intriguing subject for both researchers and students in the field of chemistry. As we continue to explore such compounds, their potential contributions to technology and medicine only grow more compelling.

Synonyms
Acridine, 9,9'-(decamethylenediimino)di-
KX2MZY5ADU
21988-21-6
1,10-Decanediamine, N,N'-di-9-acridinyl-
ACRIDINE, 9,9'-(DECAMETHYLENEDIIMINO)BIS-
NSC-219735
9,9'-(Decamethylenediimino)bis-acridine
NSC219735
NSC 219735
BRN 0504174
UNII-KX2MZY5ADU
N,N'-Di(9-acridinyl)-1,10-diaminodecane
N,N'-Bis(9-acridinyl)-1,10-decanediamine
CHEMBL39463
DTXSID90176405
Acridine,9'-(decamethylenediimino)di-
WLN: T C666 BNJ IM10M- IT C666 BNJ