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Tetrapropyllead

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Identification
Molecular formula
C12H28Pb
CAS number
637-40-3
IUPAC name
tetrapropylplumbane
State
State

This compound is a liquid at room temperature.

Melting point (Celsius)
-61.00
Melting point (Kelvin)
212.15
Boiling point (Celsius)
244.90
Boiling point (Kelvin)
518.05
General information
Molecular weight
372.42g/mol
Molar mass
372.4190g/mol
Density
1.2608g/cm3
Appearence

Tetrapropyllead appears as a colorless liquid.

Comment on solubility

Solubility of Tetrapropylplumbane

Tetrapropylplumbane, with the chemical formula C12H30Pb, is an organometallic compound comprising lead. Its solubility characteristics are influenced by its unique structure and the presence of a heavy metal atom.

  • Solvent Compatibility: Tetrapropylplumbane is generally soluble in nonpolar organic solvents such as hexane, toluene, and ether due to its hydrophobic hydrocarbon chain.
  • Aqueous Solubility: This compound is practically insoluble in water, which is consistent with the behavior of many organometallic compounds containing bulky hydrocarbon chains.
  • Temperature Dependence: Its solubility may increase in some organic solvents at elevated temperatures, although detailed studies on this aspect are limited.

In summary, when considering the solubility of tetrapropylplumbane, it is critical to acknowledge its limited solubility in polar solvents and a preference for nonpolar environments. As the saying goes, "like dissolves like," indicating that this compound thrives in nonpolar settings.

Interesting facts

Tetrapropylplumbane: An Overview

Tetrapropylplumbane is a unique organometallic compound that showcases the fascinating interplay between organic chemistry and heavy metals. This compound, formed by the combination of lead and organic propyl groups, offers intriguing insights into reactivity, stability, and environmental considerations.

Key Facts About Tetrapropylplumbane

  • Organometallic Nature: Being an organolead compound, tetrapropylplumbane features lead atoms bonded to carbon-containing groups. Its structure highlights how metals can form stable interactions with organic moieties.
  • Chemical Reactivity: Such compounds can demonstrate unique reactivity profiles, often participating in reactions that are dissimilar to their inorganic counterparts, thereby expanding the chemistry of lead.
  • Applications: While primarily of academic interest, organolead compounds, including tetrapropylplumbane, could theoretically pave the way for novel materials in electronics, pharmaceuticals, or catalysis.
  • Environmental Considerations: The use of organolead compounds raises significant concerns regarding toxicity and environmental impact, reinforcing the importance of studying such compounds with caution.

As with many organometallic compounds, research on tetrapropylplumbane opens discussions about critical topics such as toxicology, sustainability, and the development of safer alternatives in chemical synthesis. In the words of a wise chemist, "Every compound tells a story; we just need to listen closely."

Whether it is through its structural properties, potential applications, or implications in environmental chemistry, tetrapropylplumbane exemplifies the complexity and excitement of the chemical world, encouraging budding scientists to delve into the nuanced relationships between different elements and compounds.

Synonyms
Tetrapropylplumbane
PLUMBANE, TETRAPROPYL-
Tetrapropyl lead
BRN 3903378
DTXSID5063029
4-04-00-04350 (Beilstein Handbook Reference)
DTXCID9038844
smhncyotiyfokl-uhfffaoysa-n
Tetrapropyllead
Lead, tetrapropyl-
3440-75-3
NS00125348