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7-pyrrolidin-1-ylhept-5-yn-2-one

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Identification
Molecular formula
C11H17NO
CAS number
94947-73-4
IUPAC name
7-pyrrolidin-1-ylhept-5-yn-2-one
State
State

At room temperature, 7-pyrrolidin-1-ylhept-5-yn-2-one is a liquid.

Melting point (Celsius)
-35.00
Melting point (Kelvin)
238.15
Boiling point (Celsius)
275.00
Boiling point (Kelvin)
548.00
General information
Molecular weight
193.27g/mol
Molar mass
193.2860g/mol
Density
0.9578g/cm3
Appearence

The compound typically appears as a clear to pale yellow liquid. It should be handled carefully due to its chemical reactivity.

Comment on solubility

Solubility of 7-pyrrolidin-1-ylhept-5-yn-2-one

The compound 7-pyrrolidin-1-ylhept-5-yn-2-one exhibits notable solubility characteristics which are important for its application in various chemical contexts. In general, solubility can be influenced by several factors including:

  • Polarity: The presence of polar functional groups in 7-pyrrolidin-1-ylhept-5-yn-2-one enhances its solubility in polar solvents.
  • Hydrogen bonding: The ability to form hydrogen bonds with solvents often improves the compound's solubility, particularly in alcohols and water.
  • Temperature effects: Increased temperature may lead to increased solubility for many organic compounds, including this particular one.

Commonly, this compound is soluble in:

  • Water: Solubility may vary, but the presence of the pyrrolidine moiety usually promotes decent water solubility.
  • Organic solvents: It is likely to be soluble in organic solvents such as ethanol, methanol, and dimethyl sulfoxide (DMSO).

In summary, the solubility of 7-pyrrolidin-1-ylhept-5-yn-2-one is influenced significantly by its molecular structure, enabling it to be a versatile compound in various applications. Always remember that specific solubility values should be determined experimentally for precise formulations.

Interesting facts

Exploring 7-Pyrrolidin-1-ylhept-5-yn-2-one

7-Pyrrolidin-1-ylhept-5-yn-2-one is a fascinating compound within the realm of organic chemistry, known for its unique structure and properties. This compound features a pyrrolidine ring, which is a five-membered ring containing nitrogen, and an alkyne functional group. Below are some of the notable aspects of this intriguing molecule:

  • Pharmaceutical Potential: Compounds containing pyrrolidine rings are often of significant interest in medicinal chemistry due to their diverse biological activities. They can serve as precursors to pharmaceuticals or act directly as active compounds.
  • Structural Versatility: The heptyne segment of the structure provides an intriguing avenue for various chemical reactions, including cycloadditions and polymerization processes.
  • Reactivity and Synthesis: 7-Pyrrolidin-1-ylhept-5-yn-2-one can be synthesized using a variety of methods, adding to its appeal for organic chemists looking to explore synthetic pathways.
  • Applications in Research: Researchers frequently investigate how compounds like this could be tailored for specific functionalities, making them crucial in materials science and drug development.
  • Potential Mechanisms: Understanding the mechanisms of action for similar compounds can lead to breakthroughs in disease treatment, highlighting the importance of studying the nuances of such compounds.

As we delve deeper into the properties and reactions of 7-Pyrrolidin-1-ylhept-5-yn-2-one, it becomes clear that its complexity is not only a challenge but also a rich source of inspiration for future discoveries in the field of chemistry. Whether it's its potential applications or its role in complex chemical pathways, this compound exemplifies the beauty and intricacy found in organic molecules.

Synonyms
CHEMBL167419
BDBM50212578
PD183182