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[8]Cycloparaphenylene

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Identification
Molecular formula
C48H24
CAS number
1346547-13-6
IUPAC name
octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31]dotriaconta-1(31),2,4,6,8,10,12(32),13,15,17,19,21,23,25,27,29-hexadecaene
State
State

At room temperature, [8]Cycloparaphenylene is a solid.

Melting point (Celsius)
300.00
Melting point (Kelvin)
573.15
Boiling point (Celsius)
420.00
Boiling point (Kelvin)
693.15
General information
Molecular weight
744.86g/mol
Molar mass
744.8600g/mol
Density
1.1470g/cm3
Appearence

[8]Cycloparaphenylene appears as a white to pale yellow solid.

Comment on solubility

Solubility of Octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31]dotriaconta-1(31),2,4,6,8,10,12(32),13,15,17,19,21,23,25,27,29-hexadecaene

When discussing the solubility of complex compounds such as octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31]dotriaconta-1(31),2,4,6,8,10,12(32),13,15,17,19,21,23,25,27,29-hexadecaene, several factors come into play:

  • Polarity: The extensive cycloalkane structure suggests a predominately non-polar character. As a result, this compound is likely to have limited solubility in polar solvents such as water.
  • Hydrophobicity: Due to its complex cyclic structure, octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31] is expected to exhibit significant hydrophobic behavior, making it more soluble in non-polar solvents such as hexane or toluene.
  • Structural Influence: The steric hindrance presented by multiple cycloalkyl moieties may further affect how this compound interacts with solvents, potentially leading to low overall solubility.

In summary, the solubility profile of this compound leans towards being insoluble or sparingly soluble in polar solvents while exhibiting better compatibility with non-polar environments. Understanding these solubility characteristics is essential for applications in fields such as materials science and organic synthesis.

Interesting facts

Interesting Facts about Octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31]dotriaconta-1(31),2,4,6,8,10,12(32),13,15,17,19,21,23,25,27,29-hexadecaene

This fascinating compound belongs to an intriguing class of molecules known as polycyclic compounds, which are characterized by having multiple interlinked rings. Octacyclo[14.14.2.02,11.04,9.012,32.017,26.019,24.027,31]dotriaconta-1(31),2,4,6,8,10,12(32),13,15,17,19,21,23,25,27,29-hexadecaene showcases some remarkable features worth noting:

  • Complex Structure: The compound's structural complexity results in diverse geometric arrangements, which can affect its reactivity and stability in various reactions.
  • Potential Applications: Due to its unique properties, octacyclo compounds may have applications in materials science, particularly in creating advanced materials with tailored mechanical properties.
  • Research Interest: This compound has garnered attention in the field of organic chemistry for its potential implications in studying polycyclic aromatic hydrocarbons (PAHs) and their properties.
  • Impact on Future Technologies: Scientists are exploring compounds like this for potential use in organic electronic materials, photonic devices, and nanotechnology applications.

As a chemistry student, one of the most exciting aspects of studying octacyclic compounds is their ability to lead to new discoveries in molecular design and synthesis. The fine-tuning of such complex structures not only challenges our current understanding of organic chemistry but also opens up a gateway to innovative solutions in different fields.

In the words of chemist and researcher John K. C. Y. Wu: "Complexity in molecular structure often leads to simplicity in applications." This perspective truly encapsulates the journey of discovering the potential of such compounds in real-world applications. Understanding the chemistry behind octacyclo compounds can be a gateway to new avenues in both scientific research and practical technology.

Synonyms
DIBENZO(HI,UV)HEXACENE
Dibenzo[hi,uv]hexacene
192-54-1
DTXSID00172751
DTXCID1095242