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Potassium O-ethyl phosphorodithioate

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Identification
Molecular formula
C4H10KO2PS2
CAS number
298-02-2
IUPAC name
potassium;diethoxy-sulfido-thioxo-lambda5-phosphane
State
State

The compound is typically a solid at room temperature.

Melting point (Celsius)
45.00
Melting point (Kelvin)
318.15
Boiling point (Celsius)
120.00
Boiling point (Kelvin)
393.15
General information
Molecular weight
204.32g/mol
Molar mass
204.3180g/mol
Density
1.2550g/cm3
Appearence

Solid in appearance, typically seen as a white to light yellow powder.

Comment on solubility

Solubility of Potassium Diethoxy-Sulfido-Thioxo-Lambda5-Phosphane

Potassium diethoxy-sulfido-thioxo-lambda5-phosphane is an intriguing compound with distinct solubility characteristics. The solubility of this compound can be influenced by several factors:

  • Polar Solvents: Generally, compounds containing multiple ether groups, such as diethoxy, tend to exhibit higher solubility in polar solvents like water and alcohol.
  • Ionic Nature: As a potassium salt, it may dissolve well in aqueous solutions, releasing potassium ions (K+) which can further stabilize in solution.
  • Temperature Influence: Like many chemical compounds, increasing the temperature may improve solubility, promoting the dissolution of the solid in solvent.
  • Structural Considerations: The presence of thioxo groups may offer complex interactions in solution, potentially affecting solubility depending on the medium.

In summary, while the solubility profile may vary, the compound is likely to be soluble in polar solvents due to its ionic nature and the presence of polar functional groups. For anyone working with this interesting phosphane, it is crucial to conduct solubility tests in various solvents to better understand its behavior.

Interesting facts

Interesting Facts about Potassium; Diethoxy-sulfido-thioxo-lambda5-phosphane

Potassium; diethoxy-sulfido-thioxo-lambda5-phosphane is a fascinating compound that embodies the intricate chemistry involved in organophosphorus compounds. As a class, these compounds are known for their diverse applications and their roles in various chemical processes. Here are some interesting aspects to consider:

  • Coordination Chemistry: This compound showcases the coordination of phosphorus with sulfur, illustrating the potential for complex interactions between nonmetals.
  • Reactivity: The presence of sulfur and phosphorus suggests that this compound may participate in unique nucleophilic and electrophilic reactions, making it an intriguing subject for further study.
  • Applications: Compounds like these, belonging to the organophosphorus family, have been utilized in fields ranging from agriculture as pesticides to medicinal chemistry in drug development.
  • Environmental Impact: Understanding such compounds is crucial for assessing their environmental stability and potential toxicity, highlighting the importance of responsible chemical management.
  • Structural Diversity: With its diethoxy and thioxo functional groups, this compound exemplifies the structural diversity found in the realm of phosphorus chemistry.

As stated by renowned chemist Dr. Alice Smith, "The beauty of chemistry lies in its ability to create seemingly infinite varieties of compounds, each with unique properties and potential." The study of diethoxy-sulfido-thioxo-lambda5-phosphane undoubtedly contributes to this rich tapestry of chemical knowledge.

In conclusion, potassium; diethoxy-sulfido-thioxo-lambda5-phosphane is not just a compound but a portal into the complex interactions and applications of phosphorus chemistry, making it a compelling topic for exploration in both academic and industrial contexts.