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3,3-Diphenylazetidin-2-one

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Identification
Molecular formula
C16H13NO
CAS number
19829-40-6
IUPAC name
3,3-diphenylazetidin-2-one
State
State

At room temperature, 3,3-diphenylazetidin-2-one is typically in a solid state, appearing as a crystalline powder.

Melting point (Celsius)
114.00
Melting point (Kelvin)
387.15
Boiling point (Celsius)
320.00
Boiling point (Kelvin)
593.15
General information
Molecular weight
237.30g/mol
Molar mass
237.2950g/mol
Density
1.2700g/cm3
Appearence

3,3-Diphenylazetidin-2-one is typically a crystalline solid. It may appear as a white or off-white powder and often has a distinct, aromatic odor due to the presence of phenyl groups.

Comment on solubility

Solubility of 3,3-diphenylazetidin-2-one

3,3-diphenylazetidin-2-one, represented by the chemical formula C15H15NO, exhibits unique solubility characteristics that are noteworthy. Understanding its solubility can be pivotal for various applications in chemistry and material science.

Factors Influencing Solubility:

The solubility of 3,3-diphenylazetidin-2-one is influenced by several factors, including:

  • Polarity: The molecule's structure contributes to its overall polarity, which in turn affects its solubility in polar or non-polar solvents.
  • Hydrogen Bonding: Potential for hydrogen bonding can enhance solubility in certain solvents.
  • Temperature: Increased temperature typically increases solubility for many compounds, including this azetidinone.

Solubility Characteristics:

In Polar Solvents: 3,3-diphenylazetidin-2-one shows limited solubility, making it less favorable for aqueous solutions.
In Non-Polar Solvents: It tends to dissolve better in organic solvents like ethanol and chloroform due to its hydrophobic properties.

In conclusion, the solubility of 3,3-diphenylazetidin-2-one is a complex interplay of its molecular structure and the properties of the solvent. As with many organic compounds, understanding these aspects can lead to better applications and utilization in chemical processes.

Interesting facts

Interesting Facts about 3,3-diphenylazetidin-2-one

3,3-diphenylazetidin-2-one, a fascinating compound, showcases the intriguing world of organic chemistry through its unique structure and properties. Here are some key points:

  • Structural Variety: This compound belongs to the azetidine family, which is characterized by a four-membered ring. The presence of two phenyl groups at the 3-position illustrates the diversity of substituents that can enhance its chemical properties.
  • Potential Applications: Compounds like 3,3-diphenylazetidin-2-one are often explored for their roles in pharmaceuticals, especially as they can serve as intermediates in the synthesis of various bioactive molecules.
  • Synthetic Paths: The synthesis of this compound often involves multistep reactions that require meticulous control of reaction conditions. This highlights the importance of reaction mechanisms in delivering desired products.
  • Research Significance: Scientists are continuously investigating the properties of azetidine derivatives due to their potential therapeutic benefits. As stated by researchers, "The unique backbone of azetidines can lead to innovative drug designs."
  • Study Focus: Chemistry students studying this compound will benefit from exploring topics such as stereochemistry, reactivity patterns, and their implications in medicinal chemistry, emphasizing the need for a solid grasp of fundamental principles in organic synthesis.

In conclusion, 3,3-diphenylazetidin-2-one represents just one of many compounds that illustrate the complexity and excitement of organic chemistry. Its study provides insights into both fundamental and applied aspects of chemical science.

Synonyms
3,3-Diphenyl-2-azetidinone
15826-12-7
2-AZETIDINONE, 3,3-DIPHENYL-
BRN 0175423
Azetidin-2-one, 3,3-diphenyl-
DTXSID10166388
5-21-09-00058 (Beilstein Handbook Reference)
DTXCID1088879
GGDFKZZHBPIWRA-UHFFFAOYSA-N
3,3-diphenylazetidin-2-one
3,3-Difenil-2-azetidinone
L 1703
Oprea1_210788
STL327004
AKOS022138227