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1,4-Dichlorobutan-2-ol

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Identification
Molecular formula
C4H8Cl2O
CAS number
6789-80-6
IUPAC name
1,4-dichlorobutan-2-ol
State
State

1,4-Dichlorobutan-2-ol is typically a liquid at room temperature.

Melting point (Celsius)
-12.00
Melting point (Kelvin)
261.15
Boiling point (Celsius)
209.00
Boiling point (Kelvin)
482.15
General information
Molecular weight
143.02g/mol
Molar mass
143.0200g/mol
Density
1.2180g/cm3
Appearence

1,4-Dichlorobutan-2-ol typically appears as a colorless to pale yellow liquid. It may have a slight chloroform-like odor.

Comment on solubility

Solubility of 1,4-Dichlorobutan-2-ol

1,4-Dichlorobutan-2-ol is a fascinating compound when it comes to its solubility characteristics. Generally, the solubility of this compound can be influenced by several factors, including polarity and molecular structure. Here are some key points to consider:

  • Polarity: The presence of both hydroxyl (–OH) and dichloromethyl (–CCl2) groups in its structure increases the polarity of the molecule, enhancing its ability to interact with polar solvents.
  • Solvent Compatibility: 1,4-Dichlorobutan-2-ol is likely to be soluble in polar solvents such as water and alcohols due to the hydrogen bonding potential of its hydroxyl group.
  • Non-polar Solvents: Conversely, it may have reduced solubility in non-polar solvents like hydrocarbons, where strong hydrogen bonding is not possible.
  • Concentration Effects: As with many organic compounds, the solubility can change with concentration and temperature, often exhibiting increased solubility at elevated temperatures.

The ability of 1,4-dichlorobutan-2-ol to dissolve in various solvents makes it useful in applications where solubility is a crucial factor. Understanding these solubility characteristics allows for better predictions of its behavior in different chemical environments. Remember, as the saying goes, "like dissolves like," so consider the polarity when selecting a solvent!

Interesting facts

Interesting Facts About 1,4-Dichlorobutan-2-ol

1,4-Dichlorobutan-2-ol is an intriguing compound with a variety of fascinating characteristics and applications. Here are some noteworthy points about this chemical:

  • Structure and Isomerism: This compound features a unique linear structure characterized by two chlorine atoms substituting hydrogen atoms on a butanol backbone. It is an example of a molecule exhibiting structural isomerism due to different possible arrangements of the chlorine atoms.
  • Applications in Organic Synthesis: Due to its functional groups, 1,4-dichlorobutan-2-ol serves as an important building block in organic synthesis, particularly in the production of pharmaceuticals and agrochemicals. Its reactivity can lead to various interesting derivatives, making it a valuable intermediate in chemistry.
  • Biochemical Relevance: Research has shown that compounds like 1,4-dichlorobutan-2-ol may affect biological systems, prompting scientists to investigate their potential roles in toxicology and biochemical pathways. Some studies suggest they could interfere with cellular processes, highlighting the need for careful investigation of their impact on health.
  • Environmental Considerations: As with many organochlorine compounds, environmental impact is a crucial concern, particularly regarding its persistence and potential bioaccumulation. Understanding the degradation pathways of such compounds can aid in assessing their ecological risks.

In summary, 1,4-dichlorobutan-2-ol is more than just a mere chemical compound; its diverse applications and potential implications in various fields underscore the importance of studying such molecules diligently.

Synonyms
1,4-Dichloro-2-butanol
2419-74-1
2-Butanol, 1,4-dichloro-
1L7Q1Q553N
EINECS 219-339-2
UNII-1L7Q1Q553N
1,4-DICHLORO-2-BUTANOL, (+-)-
219-339-2
cknndwzsfapujs-uhfffaoysa-n
1,4-Dichlorobutan-2-ol
2-Butanol,1,4-dichloro-
MFCD00191343
1,4-Dichloro-2-butanol #
SCHEMBL135186
DTXSID00947007
1,4-DICHLORO-2-HYDROXYBUTANE
AKOS015960395
SB84263
AS-57748
CS-0314175
NS00047307
1,4-DICHLORO-2-BUTANOL, (+/-)-
T70626