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Diaza[60]fullerene

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Identification
Molecular formula
C22H10N2
CAS number
131159-39-2
IUPAC name
21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene
State
State

At room temperature, diaza[60]fullerene is a solid. It is generally stable under normal conditions and requires higher temperatures to transition to other states.

Melting point (Celsius)
450.00
Melting point (Kelvin)
723.15
Boiling point (Celsius)
1 012.00
Boiling point (Kelvin)
1 285.15
General information
Molecular weight
724.63g/mol
Molar mass
724.6320g/mol
Density
1.7200g/cm3
Appearence

Diaza[60]fullerene typically appears as a black crystalline solid, resembling most fullerene derivatives. It has a somewhat shiny and glassy texture when solid.

Comment on solubility

Solubility of 21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene

The solubility of 21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene is an interesting topic due to its complex structure and unique characteristics. Generally, the solubility of such compounds can be influenced by several factors:

  • Polarity: The more polar a compound is, the greater its solubility in polar solvents like water. Conversely, nonpolar compounds tend to dissolve better in nonpolar solvents such as hexane.
  • Hydrogen Bonding: If the molecule can form hydrogen bonds, it may increase solubility in polar solvents, enhancing interaction with solvent molecules.
  • Molecular Size: Large or bulky compounds may exhibit lower solubility due to steric hindrance, which affects their ability to interact with solvent molecules.
  • Functional Groups: The presence of certain functional groups can significantly alter solubility. For instance, groups like –OH or –NH2 typically improve solubility in water.

In the case of 21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa, its intricate framework suggests that solubility might be limited due to its size and rigidity. However, the potential presence of nitrogen atoms could provide some polar characteristics that may facilitate its solubility in specific solvents.

Overall, the solubility of this compound prompts further exploration, as one could say, "The solubility of a compound is a puzzle waiting to be solved." Understanding the solubility behavior is crucial for both theoretical studies and practical applications in chemistry.

Interesting facts

Interesting Facts about 21,22-Diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene

The compound 21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene is an intriguing target of study in organic chemistry due to its unique structure and properties. As one may guess from its name, this compound is constituted by a complex polycyclic framework that contains nitrogen atoms incorporated into its cyclic structures.

Here are some captivating features:

  • Polycyclic Structure: The multiple interlinked rings within this compound contribute to its fascinating chemical properties and reactivity. Such arrangements are often indicative of interesting electronic configurations.
  • Presence of Nitrogen: With the inclusion of nitrogen atoms, the compound could exhibit properties reminiscent of heterocycles, affecting its interaction with other molecules, including its potential biological activity.
  • Potential Applications: Due to its complex nature, it has been investigated for its potential roles in materials science and medicinal chemistry, highlighting the versatility and utility of such intricate structures.
  • Exploration in Synthesis: The synthesis of this compound poses an exciting challenge for chemists and is often a topic of research to develop new methods and strategies in organic synthesis.

Overall, this compound is not just a curious chemical entity, but a demonstration of how intricate organic chemistry can be! As researchers continue to explore and synthesize such compounds, the potential for discovering novel applications is immense. As the great chemist Robert H. Grubbs once said, "Science is a way of thinking much more than it is a body of knowledge." The study of compounds like this encourages innovative thinking and adds to the vast tapestry of chemical knowledge.

Synonyms
ANTHRA(9,1,2-cde)BENZO(h)CINNOLINE
189-58-2
Anthra[9,1,2-cde]benzo[h]cinnoline
1,2-Diaza-3,4:9,10-dibenzpyrene
UNII-0FR0YL1Z4T
0FR0YL1Z4T
NSC 30550
BRN 0027200
NSC-30550
Dinaphtho(1,2,3-de:3',2',1'-ij)phthalazine
DTXSID80172279
4-23-00-02147 (Beilstein Handbook Reference)
21,22-diazahexacyclo[10.10.2.02,7.09,23.014,19.020,24]tetracosa-1(22),2,4,6,8,10,12,14,16,18,20,23-dodecaene
NSC30550
1,4:9,10-dibenzpyrene
DTXCID6094770
Anthra[9,2-cde]benzo[h]cinnoline
Dinaphtho[1,3-de:3',2',1'-ij]phthalazine
WLN: T D5 B666 O666 2AB A & ON RNJ
Q27236717