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Dibutyldimethylstannane

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Identification
Molecular formula
C12H28Sn
CAS number
10599-70-9
IUPAC name
dibutyl(dimethyl)stannane
State
State

At room temperature, dibutyldimethylstannane is in a liquid state.

Melting point (Celsius)
-14.00
Melting point (Kelvin)
259.15
Boiling point (Celsius)
222.00
Boiling point (Kelvin)
495.15
General information
Molecular weight
292.10g/mol
Molar mass
292.0960g/mol
Density
1.0540g/cm3
Appearence

Dibutyldimethylstannane is a colorless to pale yellow liquid, often appearing transparent or slightly viscous depending on its purity. It is known for its distinctive odor.

Comment on solubility

Solubility of Dibutyl(dimethyl)stannane

Dibutyl(dimethyl)stannane, also known for its organotin chemistry applications, presents unique solubility characteristics. This compound, with its intricate structure, is primarily soluble in organic solvents. Key points to consider include:

  • Polar Solvents: Dibutyl(dimethyl)stannane is generally insoluble in water due to its hydrophobic nature.
  • Non-Polar Solvents: It exhibits good solubility in non-polar solvents such as hexane and toluene.
  • Functional Compatibility: This compound's solubility can be enhanced when mixed with esters or ethers, which can stabilize its interactions.
  • Temperature Influence: Elevated temperatures may promote better dissolution in certain organic solvents.

In summary, the solubility of dibutyl(dimethyl)stannane is influenced by its molecular structure and functional groups. As a general rule, "like dissolves like," making it more compatible with organic solvents than aqueous environments.

Interesting facts

Interesting Facts about Dibutyl(dimethyl)stannane

Dibutyl(dimethyl)stannane, commonly referred to in the field of chemistry as a stannane compound, holds significant interest due to its unique properties and versatile applications. Here are some intriguing facts about this compound:

  • Organotin Chemistry: Dibutyl(dimethyl)stannane belongs to the organotin family, which consists of tin compounds combined with carbon. Organotin compounds are widely studied for their potential uses in a variety of industrial applications.
  • Reactivity: This compound is known for its ability to participate in various chemical reactions, including catalysis and as a reagent in organic synthesis. Its unique structure allows it to be an effective precursor in producing other organotin derivatives.
  • Applications: Dibutyl(dimethyl)stannane has been utilized in numerous fields such as:
    • Polymerization processes
    • As a stabilizer in PVC (polyvinyl chloride) production
    • In pharmaceuticals and agricultural chemicals
  • Regulatory Considerations: Like many organotin compounds, dibutyl(dimethyl)stannane is subject to environmental regulations due to potential toxicity. It’s essential for researchers and industries to handle it responsibly and engage in proper disposal methods.
  • Research Frontier: Ongoing studies are focused on the environmental impact of organotin compounds, leading to a push for greener alternatives. Dibutyl(dimethyl)stannane is often at the center of discussions on how to create more sustainable chemical practices.

In summary, dibutyl(dimethyl)stannane is not only a compound of great chemical interest but also an important player in ongoing discussions regarding industrial applications and environmental impact. As the field of chemistry continues to evolve, understanding the properties and implications of such compounds is crucial for future innovations.

Synonyms
Stannane, dibutyldimethyl-
1528-00-3
Dibutyldimethylstannane
DTXSID20165120
DTXCID9087611
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Dibutyl(dimethyl)stannane
Dibutyl(dimethyl)stannane #