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N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid

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Identification
Molecular formula
C15H14ClNOS2
CAS number
35162-68-2
IUPAC name
N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid
State
State
At room temperature, it is a solid, usually crystalline and aromatic in nature.
Melting point (Celsius)
112.00
Melting point (Kelvin)
385.15
Boiling point (Celsius)
453.00
Boiling point (Kelvin)
726.15
General information
Molecular weight
322.81g/mol
Molar mass
322.8100g/mol
Density
1.2473g/cm3
Appearence

This compound appears as a white to off-white crystalline solid. It is characterized by its aromatic nature due to the presence of benzyl and chlorophenyl groups.

Comment on solubility

Solubility of N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid

N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid represents a complex chemical structure that influences its solubility. Understanding its solubility characteristics is crucial for various applications, including formulation and drug delivery. Here are some key points regarding the solubility of this compound:

  • Polarity: The presence of both the benzyl and chlorophenyl groups suggests a degree of non-polar characteristics due to the aromatic rings. In contrast, the thioic acid functional groups may introduce polar interactions.
  • Solvents: This compound is likely to show differing solubility levels in various solvents:
    • Aqueous Solutions: Limited solubility due to hydrophobic groups.
    • Organic Solvents: Higher solubility expected in non-polar solvents such as ethanol or dichloromethane.
  • Temperature Effects: Like many chemical compounds, solubility may increase with temperature, allowing for better dissolution in solvent matrices.
  • pH Influence: As a thioic acid, the solubility could also depend on the pH of the solution; the acidic form might be more soluble in lower pH conditions.

As a final note, it is important to conduct experimental solubility tests to determine precise values under varying conditions. This will provide a clearer understanding of how N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid behaves in real-world applications.

Interesting facts

Interesting Facts About N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic Acid

N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid is a fascinating compound that belongs to the thioimidate class of chemicals, known for their intriguing properties and potential applications. Here are some key points to consider:

  • Structural Complexity: This compound features a benzyl group along with a chloro-substituted phenyl moiety, contributing to its unique reactivity and interactions due to the presence of both sulfur and nitrogen atoms in its structure.
  • Biological Relevance: Compounds containing sulfur can exhibit significant biological activity. Thioimidates, in particular, have been studied for their role in medicinal chemistry, potentially acting as lead compounds in the design of new drugs.
  • Mechanism of Action: The thioamide functionality may participate in various chemical reactions, possibly acting as a nucleophile or a leaving group in many scenarios, making it an important target for synthetic chemists.
  • Environmental Impact: Understanding the behavior of such compounds is crucial in environmental chemistry, as their stability and reactivity can affect pollutant degradation and bioavailability in ecosystems.

As a chemistry student or scientist, one might find it particularly exciting to explore the synthesis and reactivity of N-benzyl-1-[(4-chlorophenyl)methylsulfanyl]methanimidothioic acid. The study of its properties could lead to innovative applications in pharmaceuticals, agrochemicals, or even material science. Remember, in the words of a renowned chemist, "Chemistry is the science of matter, but the true study of chemistry involves the study of the relationships between substances." Embracing the intricacies of this compound can lead to a deeper appreciation and understanding of the vast world of chemistry.