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17-Methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol

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Identification
Molecular formula
C32H42O3
CAS number
.
IUPAC name
17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol
State
State

At room temperature, it is usually found in a solid state, often characterized as waxy and slightly yellowish in appearance.

Melting point (Celsius)
0.00
Melting point (Kelvin)
0.00
Boiling point (Celsius)
0.00
Boiling point (Kelvin)
0.00
General information
Molecular weight
42.00g/mol
Molar mass
0.0000g/mol
Density
0.0000g/cm3
Appearence

The compound is typically described as a waxy solid. Its color can vary from whitish to light yellow.

Comment on solubility

Solubility of 17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol (C32H42O3)

The solubility of organic compounds can greatly vary based on their molecular structure and functional groups. In the case of 17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol, we can analyze its solubility characteristics as follows:

  • Hydrophobic Nature: Given its long hydrocarbon chain, this compound exhibits a pronounced hydrophobic character, which typically limits its solubility in polar solvents like water.
  • Solubility in Organic Solvents: Compounds of this nature often demonstrate better solubility in non-polar organic solvents. Examples include:
    • Hexane
    • Chloroform
    • Benzene
  • Hydroxyl Groups: The presence of three hydroxyl (–OH) groups in the molecule may contribute to slight solubility in alcohols and other polar solvents; however, this effect is often outweighed by the hydrophobic nature of the long carbon chain.

To summarize, while 17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol (C32H42O3) may have limited solubility in water, it demonstrates enhanced solubility in various organic solvents. Understanding these solubility characteristics is crucial for applications involving this compound.

Interesting facts

Interesting Facts about 17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol

17-methylhentriacont-27-en-2,4,30-triyne-1,6,29-triol is a complex organic compound that showcases the beauty and intricacy of organic chemistry. To appreciate its unique character, let's delve into its noteworthy attributes:

  • Structural Complexity: This compound features a remarkably intricate structure characterized by a long carbon chain and multiple functional groups, including hydroxyl (-OH) groups. Such complexity can often lead to unique chemical reactivity.
  • Derivatives and Synthesis: Its structure suggests potential pathways for synthesis in the laboratory. Chemists often explore such compounds for their ability to act as precursors in the formation of even more complex molecules.
  • Biological Significance: Compounds with similar structures may have biological relevance. They could potentially interact with biological systems, influencing aspects like cell signaling or acting as natural products.
  • Research Applications: The study of compounds like this one can aid in developing new materials, such as polymeric substances or novel drug candidates. The tuning of its functional groups may lead to interesting pharmacological properties.

In the words of a famous chemist, "Hide not your talents, they for use were made. What's a sundial in the shade?" This highlights the importance of every compound, regardless of its apparent complexity, in the grand tapestry of chemistry.
As we continue to explore the potential of such compounds, the scientific community remains ever-curious about the roles they may play in various fields including pharmacology, materials science, and biochemistry.