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Phenylbutazone

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Identification
Molecular formula
C19H20N2O2
CAS number
50-33-9
IUPAC name
1,5-dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one
State
State

At room temperature, Phenylbutazone is typically found as a solid. It is stable under standard conditions but should be stored away from light to maintain its integrity.

Melting point (Celsius)
105.00
Melting point (Kelvin)
378.15
Boiling point (Celsius)
434.20
Boiling point (Kelvin)
707.35
General information
Molecular weight
308.37g/mol
Molar mass
308.3740g/mol
Density
1.2650g/cm3
Appearence

Phenylbutazone appears as a colorless to light yellow crystalline powder. It is practically odorless and has a slightly bitter taste. The compound is known to discolor when exposed to light, turning a dark yellow or brown hue over time.

Comment on solubility

Solubility of 1,5-dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one

The solubility of 1,5-dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one in various solvents can be influenced by a range of factors including molecular structure, polarity, and temperature. This compound, characterized by its complex pyrazolone framework, exhibits unique solubility properties:

  • Polar Solvents: This compound tends to have limited solubility in highly polar solvents such as water due to its largely lipophilic nature.
  • Non-Polar Solvents: It is more soluble in non-polar organic solvents like hexane and toluene, where the intermolecular forces are more favorable.
  • Temperature Dependence: As with many organic compounds, solubility can increase with higher temperatures, allowing for enhanced interaction between solute and solvent.
  • pH Sensitivity: Changes in pH can significantly affect solubility, especially in alcohols or mixed solvent systems.

Overall, understanding the solubility characteristics of this compound is essential for its effective use in various chemical and pharmaceutical applications. As stated in many studies, “the solubility profile directly impacts bioavailability and compound performance in practical scenarios.”

Interesting facts

Exploring 1,5-Dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one

The compound 1,5-dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one is an intriguing member of the pyrazolone family, known for its diverse applications in the field of organic chemistry and medicinal research. This compound showcases a flexible structure that incorporates multiple functional groups, leading to various interesting properties.

Key Characteristics

  • Versatile Synthesis: The synthesis of this compound often involves reactions that can be finely tuned to manipulate its properties, ideal for studying structure-activity relationships.
  • Biological Activity: Compounds related to pyrazolones are often investigated for their anti-inflammatory, analgesic, and antipyretic activities, making this compound a potential candidate for drug development.
  • Fluorescent Properties: The presence of phenyl and enone groups can impart fluorescence, opening up applications in materials science and biosensing.
  • Noteworthy Research: It has been the subject of numerous studies aimed at understanding its pharmacological effects and mechanisms of action in biological systems.

In the realm of chemical research, *“the complexity of chemical structures can unveil a universe of potential applications.*” With its multifaceted nature, 1,5-dimethyl-4-(3-oxo-2-phenyl-but-1-enyl)-2-phenyl-pyrazol-3-one serves as a vivid example of how intricate molecular architecture can lead to significant scientific exploration and innovation.

Potential Applications

  • Drug Design: Potential for development as a novel therapeutic agent.
  • Material Science: Usage in the formulation of dyes or as a fluorescent marker.
  • Biological Studies: Investigations into the effect on cellular pathways.

The future of research surrounding this compound seems promising, encouraging chemists to delve deeper into its unique properties and potential benefits in various fields.