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1,9-Dichlorononane

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Identification
Molecular formula
C9H18Cl2
CAS number
4549-32-0
IUPAC name
1,9-dichlorononane
State
State

1,9-Dichlorononane is typically a liquid at room temperature.

Melting point (Celsius)
-20.00
Melting point (Kelvin)
253.15
Boiling point (Celsius)
238.00
Boiling point (Kelvin)
511.15
General information
Molecular weight
195.15g/mol
Molar mass
195.1240g/mol
Density
0.9504g/cm3
Appearence

1,9-Dichlorononane is a colorless liquid. It is an organochlorine compound characterized by two chlorine atoms attached to the first and ninth carbon atoms of a nonane chain.

Comment on solubility

Solubility of 1,9-Dichlorononane

When considering the solubility of 1,9-dichlorononane (C9H16Cl2), several factors come into play that make it an interesting compound to analyze.

  • Polarity: The presence of two chlorine atoms in this compound introduces a degree of polarity, making it more soluble in polar solvents compared to non-polar ones.
  • Hydrophobic Effects: As a long-chain hydrocarbon, 1,9-dichlorononane exhibits significant hydrophobic characteristics. Thus, it may have limited solubility in water.
  • Solvent Compatibility: This compound tends to be more soluble in organic solvents such as:
    • Hexane
    • Chloroform
    • Ethyl acetate

In essence, while 1,9-dichlorononane may display low solubility in water due to its hydrophobic nature, it shows promising solubility in various organic solvents, providing flexibility for applications in chemical processes. As a result, understanding the solubility properties of this compound is essential for its practical usage in organic chemistry and related fields.

Interesting facts

Interesting Facts about 1,9-Dichlorononane

1,9-Dichlorononane is an intriguing organic compound that belongs to the class of chlorinated hydrocarbons. It features two chlorine atoms positioned at the first and ninth carbon atoms of a nine-carbon chain. Here are some compelling aspects of this compound:

  • Chlorinated Hydrocarbons: As a chlorinated alkane, 1,9-dichlorononane showcases the versatility of halogenated compounds in organic chemistry. Chlorination can significantly alter the chemical properties and reactivity of hydrocarbons.
  • Chain Length Implications: With a nonane backbone, this compound's structure influences its physical and chemical properties, such as volatility and reactivity, making it a candidate for various applications in synthetic chemistry.
  • Environmental Impact: Chlorinated compounds are often scrutinized for their environmental effects. The presence of chlorine can contribute to persistent organic pollutants (POPs), raising concerns about bioconcentration and long-term ecological effects.
  • Applications: 1,9-Dichlorononane may not be as widely known as other chlorinated compounds, but it could possibly be utilized in the synthesis of more complex molecules, including pharmaceuticals and agrochemicals.
  • Research and Development: The study of 1,9-dichlorononane in a laboratory setting can help elucidate reaction mechanisms involving chlorinated alkanes, providing insights into *substitution reactions* and *free radical pathways*.

In summary, 1,9-dichlorononane is not only a fascinating example of a chlorinated hydrocarbon but also serves as a reminder of the complexity and significance of studying halogenated compounds in chemistry.

Synonyms
1,9-DICHLORONONANE
Nonane, 1,9-dichloro-
NSC 9477
EINECS 212-484-2
DTXSID30870778
DTXCID10818471
212-484-2
jmgrnjzuqcejdb-uhfffaoysa-n
821-99-8
MFCD00001024
NSC-9477
NSC 9477;
C9H18Cl2
NSC9477
Nonane,9-dichloro-
1,9-dichloro-nonane
4DXR427FMJ
SCHEMBL977941
AKOS015850594
CS-W001919
DS-1949
SY033661
D5116
NS00042405