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1,2,3,3-Tetrachlorobutane

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Identification
Molecular formula
C4H6Cl4
CAS number
634-68-2
IUPAC name
1,2,3,3-tetrachlorobutane
State
State

At room temperature, 1,2,3,3-tetrachlorobutane is a liquid. It is relatively stable under standard laboratory conditions.

Melting point (Celsius)
-32.00
Melting point (Kelvin)
241.00
Boiling point (Celsius)
179.00
Boiling point (Kelvin)
452.00
General information
Molecular weight
187.90g/mol
Molar mass
187.9020g/mol
Density
1.4260g/cm3
Appearence

1,2,3,3-Tetrachlorobutane typically appears as a colorless liquid. It retains this clear appearance at room temperature and standard conditions. The compound's chlorine substituents contribute to its density and chemical behavior.

Comment on solubility

Solubility of 1,2,3,3-tetrachlorobutane

1,2,3,3-tetrachlorobutane, with the chemical formula C4H6Cl4, presents interesting solubility characteristics due to its structure and the presence of multiple chlorine atoms. Here are some key points regarding its solubility:

  • Nonpolar Solvent Compatibility: This compound is generally more soluble in nonpolar solvents such as hexane and dichloromethane due to the nonpolar carbon backbone and its overall hydrophobic nature.
  • Poor Water Solubility: 1,2,3,3-tetrachlorobutane is not soluble in water. The significant electronegativity of the chlorine atoms creates a dipole moment, but the overall structure prevents hydrogen bonding with water molecules.
  • Temperature Influence: Solubility can also be influenced by temperature, with a general trend of increasing solubility in nonpolar solvents as the temperature rises.
  • Environmental Implications: Given its stability and persistence in environmental matrices, its low solubility in water raises concerns regarding groundwater contamination.

In summary, while 1,2,3,3-tetrachlorobutane exhibits moderate solubility in nonpolar solvents, its poor solubility in water makes it an important compound to consider in both industrial applications and environmental assessments.

Interesting facts

Interesting Facts About 1,2,3,3-Tetrachlorobutane

1,2,3,3-tetrachlorobutane is a fascinating compound in the realm of organic chemistry. As a halogenated hydrocarbon, it offers unique properties and applications that are worth exploring:

  • Structural Significance: The presence of four chlorine atoms in its structure has a significant influence on its reactivity and stability. This compound showcases how halogenation can drastically alter the characteristics of a simple alkane.
  • Applications in Chemistry: It is often used as a building block in organic synthesis. Its chlorinated functionalities make it an excellent candidate for further chemical transformations, paving the way for creating more complex molecules.
  • Environmental Impact: The chlorinated compounds like 1,2,3,3-tetrachlorobutane are often scrutinized for their environmental persistence. Their effects on biological systems and ecosystems highlight the importance of studying halogenated compounds closely.
  • Reactivity: 1,2,3,3-tetrachlorobutane can undergo various reactions, including nucleophilic substitution and reduction. This versatility is a topic of great interest among chemists looking to exploit such compounds for innovative applications.
  • Toxicological Studies: Research investigating the toxic effects of these halogenated hydrocarbons is critical for understanding their safety. Being informed about their potential health impacts is essential in any workplace that handles such chemicals.

In summary, 1,2,3,3-tetrachlorobutane serves as an excellent example of how simple structural changes can lead to profound implications in chemistry, environmental science, and safety protocols. Its study not only illuminates fundamental chemical principles but also provides insight into the challenges posed by synthetic chemicals in our environment.

Synonyms
1,2,3,3-TETRACHLOROBUTANE
13138-51-7
DTXSID10927173
DTXCID301355972
1,2,3,3-Tetrachlorbutan
SCHEMBL5186284
SCHEMBL6689515
SCHEMBL7278671
SCHEMBL28065308
NGAAIHKWQFLRDY-UHFFFAOYSA-N