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Tris(2-chloroethoxy)silane

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Identification
Molecular formula
C6H13Cl3O3Si
CAS number
18002-82-7
IUPAC name
tris(2-chloroethoxy)silane
State
State

At room temperature, tris(2-chloroethoxy)silane is in a liquid state.

Melting point (Celsius)
-60.00
Melting point (Kelvin)
213.00
Boiling point (Celsius)
280.00
Boiling point (Kelvin)
553.00
General information
Molecular weight
239.65g/mol
Molar mass
239.6520g/mol
Density
1.2373g/cm3
Appearence

Tris(2-chloroethoxy)silane is a colorless to pale yellow liquid. It may have a slight characteristic odor.

Comment on solubility

Solubility of tris(2-chloroethoxy)silane

When assessing the solubility of tris(2-chloroethoxy)silane (C9H12Cl3O3Si), it is important to consider several factors that influence its behavior in various solvents.

  • Polarity: The presence of multiple chloroethoxy groups increases the compound's polarity, aiding in its solubility in polar solvents.
  • Solvent compatibility: tris(2-chloroethoxy)silane is likely to be soluble in organic solvents such as *dichloromethane* and *ethyl acetate*, but may find limited solubility in non-polar solvents.
  • Temperature influence: As with many chemical compounds, higher temperatures can enhance solubility due to increased molecular motion.
  • Water solubility: This compound generally demonstrates low solubility in water, a characteristic trait of many silanes, primarily due to their hydrophobic nature.

Overall, the solubility characteristics of tris(2-chloroethoxy)silane highlight its utility in various chemical applications, especially where polar solvents are involved. It is essential to consider these attributes when selecting an appropriate medium for reactions or formulations.

Interesting facts

Tris(2-chloroethoxy)silane: A Multifaceted Compound

Tris(2-chloroethoxy)silane is an intriguing organosilicon compound that plays a pivotal role in various industrial applications and research domains. Below are some interesting facts that underscore its significance:

  • Versatile Applications: This compound is frequently used in the synthesis of silane-based materials and coatings, which enhance properties like adhesion, moisture resistance, and thermal stability.
  • Surface Modification: It serves as a powerful reagent for silanol group modification, contributing to improved surface characteristics in composites and polymers.
  • Intermediate Role: In the chemical industry, tris(2-chloroethoxy)silane can function as an intermediate in the preparation of more complex silanes and silicone materials, expanding its utility to broader applications.
  • Hydrophobic Properties: Compounds containing chloroalkoxy groups, similar to tris(2-chloroethoxy)silane, are known to impart hydrophobic qualities to surfaces, making it useful in water-repellent coatings.
  • Research Frontier: Its structure allows chemists to explore innovative reactions, contributing to the development of new materials with tailored properties for electronics, biomaterials, and more.

In summary, tris(2-chloroethoxy)silane not only serves as a functional compound in various industries but also offers a fascinating field of study for chemists aiming to push the boundaries of materials science.

Synonyms
SCHEMBL5410041
NS00043644