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Troger's Base

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Identification
Molecular formula
C20H20N2
CAS number
529-81-7
IUPAC name
12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene
State
State

Troger's base is a solid at room temperature.

Melting point (Celsius)
126.00
Melting point (Kelvin)
399.15
Boiling point (Celsius)
471.15
Boiling point (Kelvin)
744.30
General information
Molecular weight
312.42g/mol
Molar mass
312.4240g/mol
Density
1.2871g/cm3
Appearence

Troger's base is a white solid with a crystalline appearance. It forms needle-like or plate-like crystals under standard conditions.

Comment on solubility

Solubility of 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene

The solubility of 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene is rather intriguing due to its complex structure. This compound, belonging to a class of polycyclic compounds, displays varying solubility characteristics based on its chemical environment.

Factors Influencing Solubility

The solubility of this compound can be influenced by several key factors:

  • Polarity: As a polycyclic compound, the presence of polar and non-polar components in its structure plays a crucial role in solubility.
  • Solvent Type: Solubility is highly dependent on the choice of solvent; for example, non-polar solvents like hexane may promote better solubility compared to polar solvents like water.
  • Temperature: Generally, increasing temperature can enhance solubility, although this can vary with specific interactions within the compound.

General Observations

In terms of solubility:

  • This compound may exhibit low solubility in aqueous environments, typical for many organic, hydrophobic compounds.
  • However, it could show better solubility in organic solvents, potentially allowing for easier manipulation in chemical applications.
  • The presence of the azole group may also introduce some degree of solubility in certain polar solvents depending on the pH.

Overall, understanding the solubility of 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene is essential for its practical applications in chemical processes and research, emphasizing the need for careful selection of solvents and conditions to optimize its use.

Interesting facts

Interesting Facts about 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene

The compound 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene is truly a remarkable example of complexity in organic chemistry due to its unique structural composition. Here are some intriguing aspects of this compound:

  • Complex Structure: This molecule exhibits a pentacyclic framework, which consists of five interconnected rings. Such complex architectures are rare in organic chemistry and are often synthesized for research into novel properties and applications.
  • Aza Variation: The presence of an azole ring (due to nitrogen substitution) introduces different electronic properties compared to similar carbon-only frameworks. This can influence reactivity and stability, making it a topic of interest for chemists.
  • Skeletal Diversity: The diversity of its skeletal arrangement makes it a potential candidate for studying conformational flexibility—a key aspect in drug design.
  • Applications in Research: Molecules with intricate structures like this one may find applications in fields ranging from medicinal chemistry to materials science, particularly in developing innovative therapies or advanced materials.
  • Potential for Synthesis: Its synthesis challenges chemists to develop new methodologies that can handle multi-ring systems efficiently, pushing the boundaries of modern organic synthesis.

As we explore such fascinating compounds, remember the words of chemist Linus Pauling: “The best way to have a good idea is to have a lot of ideas.” The synthesis and analysis of compounds like 12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa can inspire a plethora of creative ideas and lead to groundbreaking discoveries in chemistry.

Synonyms
27093-62-5
N-Methyl-7H-dibenzo(c,g)carbazole
7-methyl-7H-dibenzo[c,g]carbazole
7-Me-DBC
CW2LR35YB3
7-methyldibenzo(c,g)carbazole
DTXSID70181557
7-METHYL-7H-DIBENZO(C,G)CARBAZOLE
N-MeDBC
RefChem:163716
DTXCID10104048
N-Methyldibenzo(c,g)carbazole
N-Methyldibenzo[c,g]carbazole
12-methyl-12-azapentacyclo[11.8.0.02,11.03,8.016,21]henicosa-1(13),2(11),3,5,7,9,14,16,18,20-decaene
CCRIS 1846
N-Methyl-3:4:5:6-dibenzcarbazole
BRN 0238629
7H-DIBENZO(c,g)CARBAZOLE, N-METHYL-
UNII-CW2LR35YB3
5-20-08-00622 (Beilstein Handbook Reference)
SCHEMBL10023491
SCHEMBL30772964
N7-METHYLDIBENZO(C,G)CARBAZOLE
Q26840997