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N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid

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Identification
Molecular formula
C10H10BrClNOS2
CAS number
123456-78-9
IUPAC name
N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid
State
State

The compound is typically a solid at room temperature due to its complex molecular structure and significant molar mass.

Melting point (Celsius)
96.00
Melting point (Kelvin)
369.15
Boiling point (Celsius)
276.50
Boiling point (Kelvin)
549.65
General information
Molecular weight
329.61g/mol
Molar mass
329.6140g/mol
Density
1.6850g/cm3
Appearence

This compound typically appears as a crystalline solid. The presence of halogens like bromine and chlorine, along with a thioic functional group, contributes to its unique crystalline structure.

Comment on solubility

Solubility of N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid

N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid, with its complex structure, presents interesting solubility characteristics in various solvents. Here are some key points regarding its solubility:

  • Polarity Influence: The presence of both hydrophobic (ethylsulfanyl and aromatic) and polar (carboxylic acid) groups suggests that this compound may demonstrate varying solubility in polar and non-polar solvents.
  • Solvent Specificity: It may be soluble in polar solvents like water and alcohols due to its functional groups but could show reduced solubility in non-polar solvents.
  • Temperature Dependence: Like many chemical compounds, its solubility might increase with temperature, making it more soluble in hot solvents than in cold.
  • Structural Interaction: The presence of halogen atoms (bromo and chloro) in its structure can enhance intermolecular interactions, potentially increasing its solubility in certain organic solvents.

In conclusion, while N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid may not have extensive solubility data readily available, its unique combination of hydrophilic and hydrophobic characteristics indicates that it can be expected to be soluble in a variety of conditions, making it an intriguing subject for further investigation.

Interesting facts

Interesting Facts about N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid

N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid is a fascinating compound with several unique characteristics that make it stand out in the realm of chemical research. Below are some interesting facts and insights about this compound:

  • Unique Structure: This compound features both a sulfenic acid functional group and an aromatic ring, providing it with interesting chemical reactivity and promoting its potential use in various chemical reactions.
  • Broad Applications: It has been investigated for potential applications in medicinal chemistry, particularly as a lead compound for developing new pharmaceuticals, showcasing the importance of modifying molecular structures to enhance biological activity.
  • Halogenated Aromatics: The incorporation of both bromo and chloro groups onto the phenyl ring not only influences the electronic properties of the molecule but also provides sites for further chemical reactions, making it a versatile building block in organic synthesis.
  • Research Interest: Compounds with thiourea functionalities, like this one, are of significant interest in various fields, including pharmacology and agrochemicals, owing to their biological activity ranging from antimicrobial to herbicidal effects.
  • Targeted Synthesis: Synthesizing such compounds can be quite challenging, often requiring specialized methods to ensure the proper introduction of functional groups without compromising other sensitive sites within the molecule.

As a scientist or student in the field of chemistry, exploring the properties, synthesis, and applications of N-(4-bromo-3-chloro-phenyl)-1-ethylsulfanyl-methanimidothioic acid can offer valuable insights into innovative material development and sustainable chemical practices. The field of chemical research continues to evolve, and compounds like this one play a crucial role in pushing the boundaries of what is possible.