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Dichloro(ethyl)vinylsilane

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Identification
Molecular formula
C4H8Cl2Si
CAS number
18032-02-1
IUPAC name
dichloro-ethyl-vinyl-silane
State
State

At room temperature, dichloro(ethyl)vinylsilane is in a liquid state.

Melting point (Celsius)
-97.00
Melting point (Kelvin)
176.15
Boiling point (Celsius)
112.00
Boiling point (Kelvin)
385.15
General information
Molecular weight
161.08g/mol
Molar mass
161.0790g/mol
Density
1.0150g/cm3
Appearence

Dichloro(ethyl)vinylsilane is a colorless liquid, typically characterized by its transparency and lack of color. It is often used as a reagent in chemical syntheses.

Comment on solubility

Solubility of Dichloroethylvinylsilane

Dichloroethylvinylsilane, with the chemical formula C4H6Cl2Si, exhibits a range of solubility characteristics that make it particularly interesting in various applications. Understanding its solubility can provide valuable insight into how this compound interacts with other substances.

Solubility Characteristics

  • Solvent Compatibility: Dichloroethylvinylsilane is generally soluble in organic solvents such as ethanol, acetone, and toluene. This solubility is advantageous for use in formulations requiring a liquid state.
  • Water Solubility: This compound is practically insoluble in water, which limits its use in aqueous environments but can enhance stability in non-aqueous conditions.
  • Polarity Considerations: The presence of chlorine atoms in its structure contributes to its polar characteristics. This polarity affects its interaction with non-polar solvents.

In summary, the solubility of dichloroethylvinylsilane varies notably between organic and aqueous environments. Its ability to dissolve in organic solvents while remaining insoluble in water emphasizes its utility in specific applications.

Interesting facts

Interesting Facts about Dichloroethylvinylsilane

Dichloroethylvinylsilane is a versatile organosilicon compound used in a variety of applications, particularly in the field of silane chemistry. Here are some fascinating insights into this compound:

  • Reactivity: This compound is characterized by its highly reactive nature due to the presence of vinyl groups. The vinyl functional group allows for easy incorporation into polymers through radical polymerization, making it an essential component in many silicone formulations.
  • Surface Modification: Dichloroethylvinylsilane is often utilized for surface modification of various materials, enhancing adhesion and compatibility between organic and inorganic substrates. This application is particularly valuable in the coatings and adhesives industries.
  • Synthesis of Functional Silicones: The compound serves as a key intermediate in the synthesis of functionalized silicone materials, enabling the design of tailored polymers with specific attributes such as increased hydrophobicity or improved thermal stability.
  • Industrial Applications: Its ability to bond with organic polymers makes it popular in the production of silane-treated glass, rubber, and fiber composites, leading to improved performance in various engineering applications.
  • Safety Considerations: Although useful, dichloroethylvinylsilane must be handled with care due to its toxicity and reactivity. Proper safety protocols should be followed to minimize any health risks to those working with the compound.

Overall, dichloroethylvinylsilane stands out in the world of chemical compounds due to its unique properties and broad range of applications. As chemists continue to explore its potential, further innovations are expected to emerge, enhancing its utility in modern materials science.

Synonyms
Dichloroethylvinylsilane
Silane, dichloroethylvinyl-
Silane, dichloroethenylethyl-
10138-21-3
ETHYLVINYLDICHLOROSILANE
Vinyl(ethyl)dichlorosilane
EINECS 233-384-5
BRN 1700860
R24135374K
ETHYL(VINYL)DICHLOROSILANE
DTXSID80871199
4-04-00-04185 (Beilstein Handbook Reference)
DTXCID10818870
233-384-5
VINYLETHYLDICHLOROSILANE
dichloro-ethenyl-ethylsilane
Silane,dichloroethenylethyl-
UNII-R24135374K
SCHEMBL72797
NS00044720
Q27287693