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Icosane

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Identification
Molecular formula
C20H42
CAS number
112-95-8
IUPAC name
aluminum;icosane
State
State

At room temperature, icosane is a crystalline solid. It transitions gradually to a liquid state just above average room temperatures, specifically starting to melt at around 36.7°C.

Melting point (Celsius)
36.70
Melting point (Kelvin)
309.85
Boiling point (Celsius)
343.00
Boiling point (Kelvin)
616.15
General information
Molecular weight
282.55g/mol
Molar mass
282.5490g/mol
Density
0.7698g/cm3
Appearence

In its pure form, icosane is a colorless, waxy solid. It lacks distinct color but may appear white in bulk form. The compound is notable for its waxy texture that is common to long-chain alkanes.

Comment on solubility

Solubility of Aluminum Icosane

Aluminum iicosane, a compound consisting of aluminum and the hydrocarbon iicosane, presents an interesting case regarding its solubility characteristics. The solubility of this compound can be influenced by several factors.

Key Factors Influencing Solubility:

  • Polarity: Aluminum generally forms ionic compounds that tend to be soluble in polar solvents, while iicosane, being a long-chain alkane, is nonpolar.
  • Temperature: Higher temperatures may increase the solubility of certain compounds by providing the necessary energy to break intermolecular forces.
  • Solvent Type: The choice of solvent plays a critical role. For instance, aluminum iicosane may not dissolve well in water but could have some degree of solubility in organic solvents.

It is generally observed that:

  • Nonpolar compounds are less soluble in polar solvents.
  • Ionic compounds may dissolve better in polar solvents.

In conclusion, while the solubility of aluminum iicosane is somewhat limited due to the presence of a nonpolar hydrocarbon, the correct choice of solvent can enhance its solubility properties. Experimentation and specific conditions will ultimately determine how well this compound can be dissolved in various media.

Interesting facts

Interesting Facts about Aluminum Icosane

Aluminum iacosane is a fascinating compound known for its unique combination of properties derived from both aluminum and iacosane.

Chemical Composition

This compound consists of aluminum, a lightweight and versatile metal, combined with iacosane, a long-chain alkane. This synergy contributes to a variety of noteworthy features:

  • Versatility: Aluminum iacosane is used in multiple applications, ranging from materials science to the cosmetic industry.
  • Electrical Conductivity: The presence of aluminum provides excellent electrical conductivity, making it valuable in electronic applications.
  • Hydrophobic Properties: Icosane gives the compound hydrophobic characteristics, which can be beneficial in coatings and lubricants.

Importance in Research

Research on aluminum iacosane has been particularly interesting due to several factors:

  • Nanotechnology: The compound is studied for its potential in the development of nanomaterials.
  • Environmental Applications: Its properties may be harnessed for solar energy capture and conversion.
  • Innovative Materials: Ongoing research seeks to create lighter and more durable materials for aerospace and automotive industries.

Fun Facts

Here are a few additional tidbits about aluminum iacosane to pique your interest:

  • While aluminum is abundant in the Earth's crust, the addition of iacosane into its structure opens avenues for specialized applications.
  • This compound’s interactions with other substances can lead to intriguing reactions, making it a favorite among chemists keen on exploring organic-inorganic hybrids.
  • Combining the lightness of aluminum with the stability of long-chain alkanes demonstrates the beauty and complexity of chemical design.

In summary, aluminum iacosane is not just a simple compound; it stands at the intersection of organic and inorganic chemistry, showcasing the endless possibilities that await scientists and researchers in the realm of chemical innovation. Its unique properties pave the way for exciting future discoveries.