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2-(p-tolyl)ethylhydrazine

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Identification
Molecular formula
C9H14N2
CAS number
53914-65-5
IUPAC name
2-(p-tolyl)ethylhydrazine
State
State

At room temperature, 2-(p-tolyl)ethylhydrazine exists as a liquid. Its liquid state is due to the presence of weak intermolecular forces that are insufficient to maintain a solid phase.

Melting point (Celsius)
-5.00
Melting point (Kelvin)
268.15
Boiling point (Celsius)
261.00
Boiling point (Kelvin)
534.15
General information
Molecular weight
150.22g/mol
Molar mass
150.2230g/mol
Density
0.9983g/cm3
Appearence

2-(p-tolyl)ethylhydrazine is typically a liquid under standard conditions and is colorless or light yellow in appearance. Due to its structure, it may also possess a slight aromatic odor.

Comment on solubility

Solubility of 2-(p-Tolyl)ethylhydrazine

2-(p-Tolyl)ethylhydrazine, a compound characterized by its unique hydrazine structure combined with a p-tolyl group, presents particular solubility traits that are noteworthy in the context of its chemical behavior.

General Solubility Characteristics

This compound is generally characterized by its moderate solubility in organic solvents, and it is important to consider the following observations:

  • Solvent Preference: It tends to dissolve better in non-polar to moderately polar organic solvents such as ethanol, methanol, and dichloromethane.
  • Water Solubility: 2-(p-Tolyl)ethylhydrazine exhibits low solubility in water due to its hydrophobic p-tolyl group, which limits interaction with water molecules.
  • Temperature Dependence: Solubility may vary with temperature; generally, organic compounds can become more soluble at elevated temperatures.

Factors Influencing Solubility

Several factors impact the solubility of 2-(p-Tolyl)ethylhydrazine:

  • Molecular Interactions: Hydrogen bonding potential and van der Waals interactions play significant roles in solubility.
  • Structural Variability: The presence of functional groups can impact solubility positively or negatively depending on their nature.
  • pH Level: The solubility can change based on the pH of the solution, particularly if the compound behaves as a weak acid or base.

In summary, understanding the solubility of 2-(p-Tolyl)ethylhydrazine will enhance its application in various chemical processes. As with many organic compounds, the choice of solvent and the presence of functional groups are critical in determining how well this compound can be utilized in practical scenarios.

Interesting facts

Interesting Facts about 2-(p-tolyl)ethylhydrazine

2-(p-tolyl)ethylhydrazine is an intriguing compound that belongs to the class of hydrazines, which are known for their nitrogen-rich structure and diverse applications. This specific compound has garnered interest due to its unique substituents and potential uses in various fields. Here are some engaging aspects of this chemical:

  • Pharmaceutical Applications: 2-(p-tolyl)ethylhydrazine has been studied for its potential role in medicinal chemistry. Some hydrazines have shown promising activity in the treatment of diseases, including cancer, due to their ability to interact with biological molecules.
  • Explosive Properties: Compounds in the hydrazine family are notorious for their energetic properties. While 2-(p-tolyl)ethylhydrazine may not be as widely recognized as other hydrazines in this capacity, understanding its reactivity can be important for safety in handling these substances.
  • Research Significance: Scientists are continually exploring the reactivity and properties of hydrazines like 2-(p-tolyl)ethylhydrazine to develop new materials and improve existing ones. The compound can be a subject of interest in ongoing research involving synthetic pathways and mechanism studies.
  • Barrier to Usage: Despite their usefulness, hydrazines pose certain challenges in handling and storage due to their toxicity and potential hazards. This makes compounds like 2-(p-tolyl)ethylhydrazine a topic of discussion in safety protocols and environmental concerns in chemical manufacturing.

In summary, 2-(p-tolyl)ethylhydrazine represents a fascinating intersection of chemistry, safety, and application. Its unique structure and properties make it a compound worthy of further exploration in both scientific research and practical applications. As we continue to study nitrogens and their derivatives, the potential innovations from compounds like this are ever-expanding.

Synonyms
32504-14-6
2-(4-methylphenyl)ethylhydrazine
HYDRAZINE, (p-METHYLPHENETHYL)-
(4-methylphenethyl)hydrazine
0HFF8B0HY9
(2-(4-Methylphenyl)ethyl)hydrazine
4-Methylphenelzine
p-Methylphenelzine
[2-(4-methylphenyl)ethyl]hydrazine
(p-Methylphenethyl)hydrazine
BRN 0637217
Hydrazine, [2-(4-methylphenyl)ethyl]-
2-(P-Tolyl)ethylhydrazine
UNII-0HFF8B0HY9
4-15-00-01278 (Beilstein Handbook Reference)
SCHEMBL4287677
4-METHYLPHENETHYLHYDRAZINE
DTXSID00186232
CKAKUERTINBUEB-UHFFFAOYSA-N
AKOS009329740