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1,3-diethylisothiourea

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Identification
Molecular formula
C5H12N2S
CAS number
2983-03-3
IUPAC name
1,3-diethylisothiourea
State
State

At room temperature, 1,3-diethylisothiourea is in a solid state.

Melting point (Celsius)
74.00
Melting point (Kelvin)
347.15
Boiling point (Celsius)
227.00
Boiling point (Kelvin)
500.15
General information
Molecular weight
130.22g/mol
Molar mass
130.2150g/mol
Density
1.1180g/cm3
Appearence

1,3-Diethylisothiourea typically appears as a white to off-white crystalline solid.

Comment on solubility

Solubility of 1,3-diethylisothiourea

1,3-Diethylisothiourea is a fascinating compound with interesting solubility characteristics. Understanding its solubility can provide insight into its behavior in various chemical environments. Here are some key points:

  • Highly Soluble: 1,3-Diethylisothiourea is known to be highly soluble in polar solvents, particularly water and alcohols due to the presence of the thiourea functional group.
  • Temperature Dependency: The solubility of this compound can increase with temperature, making it more manageable for applications that involve heating.
  • Non-Polar Solvents: Its solubility in non-polar solvents is significantly lower. This can be attributed to the compound's polar characteristics that favor interactions with polar solvents.

As a general rule, one might say, "Like dissolves like", which underscores the importance of solvent polarity in determining the solubility of 1,3-diethylisothiourea.

To summarize, the compounds or chemical systems involving 1,3-diethylisothiourea often rely on its high solubility in polar media, making it suitable for a variety of chemical reactions and applications.

Interesting facts

Interesting Facts about 1,3-Diethylisothiourea

1,3-Diethylisothiourea is an intriguing compound that has garnered attention in various fields of research, especially in chemistry and biochemistry. Here are some interesting aspects of this molecule:

  • Unique Structure: The compound features a distinctive isothiourea functional group, which is characterized by the presence of both sulfur and nitrogen. This unique structure allows it to exhibit a range of interesting chemical behaviors.
  • Biological Applications: 1,3-Diethylisothiourea has been studied for its potential roles in pharmacology. Its interaction with certain enzymes has led to investigations into its inhibitory properties, particularly in relation to nitric oxide synthase.
  • Research Context: It is not just a standalone compound; research involving this compound often focuses on its interactions in biological systems, leading to findings that enhance our understanding of metabolic processes.
  • Safety Considerations: As with many sulfur-containing compounds, attention must be paid to the handling of 1,3-diethylisothiourea due to potential toxicity. Proper laboratory safety protocols should always be followed when working with this substance.
  • Potential for Innovation: The properties of this compound may serve as a foundation for the development of new therapeutic agents. Its ability to act on specific biochemical pathways makes it a subject of interest in medicinal chemistry.

In summary, 1,3-diethylisothiourea is more than just a compound; it exemplifies the intricate relationships between chemical structures and their biological activities. As researchers continue to explore its applications, we may uncover even more fascinating uses and implications of this compound in science.