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1,1,3-Tributylisothiourea

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Identification
Molecular formula
C13H28N2S
CAS number
.NULL
IUPAC name
1,1,3-tributylisothiourea
State
State

At room temperature, it is typically a liquid.

Melting point (Celsius)
21.00
Melting point (Kelvin)
294.15
Boiling point (Celsius)
315.00
Boiling point (Kelvin)
588.15
General information
Molecular weight
258.49g/mol
Molar mass
258.4900g/mol
Density
0.9100g/cm3
Appearence

1,1,3-Tributylisothiourea is typically found as a colorless to pale yellow liquid.

Comment on solubility

Solubility of 1,1,3-Tributylisothiourea

1,1,3-Tributylisothiourea is an intriguing compound with unique solubility properties. Its solubility is influenced by the presence of the isothiourea functional group and the lengthy tributyl substituents. Here are some key points regarding its solubility:

  • Solvent Preferences: This compound is typically more soluble in organic solvents, such as ethanol and chloroform, due to its hydrophobic tributyl chains.
  • Aqueous Solubility: When it comes to water solubility, 1,1,3-tributylisothiourea exhibits limited solubility. The bulky tributyl groups hinder interactions with water molecules.
  • Temperature Influence: Like many organic compounds, the solubility may increase with temperature. As the temperature rises, molecular motion increases, potentially enhancing the dissolution process.

In summary, while 1,1,3-tributylisothiourea finds better compatibility in organic solvents, its solubility in aqueous mediums remains minimal. As a result, it is essential to consider these factors when working with this compound in various applications. Understanding the solubility characteristics can facilitate its effective use in further chemical research and industrial processes.

Interesting facts

Interesting Facts about 1,1,3-Tributylisothiourea

1,1,3-Tributylisothiourea is a fascinating compound that belongs to the class of isothioureas, which are known for their interesting biological activities. Here are some noteworthy points about this unique compound:

  • Structural Highlights: The chemical structure of 1,1,3-tributylisothiourea features a central carbon atom bonded to three butyl groups and an isothiourea functional group. This configuration contributes to its stability and reactivity.
  • Biological Activity: Isothioureas, including 1,1,3-tributylisothiourea, have shown promise in various biological applications. Research indicates that they can act as inhibitors of certain enzymes, making them subjects of interest in pharmacology.
  • Role in Agriculture: This compound has been investigated for its potential use as a growth regulator in plants. Its ability to influence plant development processes opens doors for agricultural innovation.
  • Potential Toxicity: While 1,1,3-tributylisothiourea shows potential benefits, it’s essential to acknowledge that isothioureas can exhibit toxicity in certain biological systems. Understanding the mechanisms of toxicity is crucial for safe application.
  • Research Applications: Scientists are studying the properties of this compound for various research applications, including its role in medicinal chemistry and its interactions with biological targets.

In summary, 1,1,3-tributylisothiourea is more than just a chemical compound; it is a platform for exploring exciting research avenues in both biotechnology and environmental science. Its intriguing properties ensure that it remains a topic of interest for chemists and biologists alike.