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Erythromycin

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Identification
Molecular formula
C37H67NO13
CAS number
114-07-8
IUPAC name
(1R,7R,17R)-4-ethylidene-7-hydroxy-7-methyl-6-methylene-2,9-dioxa-14-azatricyclo[9.5.1.014,17]heptadec-11-ene-3,8-dione
State
State

State at room temperature: Erythromycin is typically in a solid state at room temperature, appearing as a fine powder.

Melting point (Celsius)
138.00
Melting point (Kelvin)
411.00
Boiling point (Celsius)
208.00
Boiling point (Kelvin)
481.00
General information
Molecular weight
733.94g/mol
Molar mass
733.9370g/mol
Density
1.2400g/cm3
Appearence

Appearance: White or slightly yellow crystalline powder. It may appear as small crystals or grain-like.

Comment on solubility

Solubility of (1R,7R,17R)-4-ethylidene-7-hydroxy-7-methyl-6-methylene-2,9-dioxa-14-azatricyclo[9.5.1.014,17]heptadec-11-ene-3,8-dione

The solubility of (1R,7R,17R)-4-ethylidene-7-hydroxy-7-methyl-6-methylene-2,9-dioxa-14-azatricyclo[9.5.1.014,17]heptadec-11-ene-3,8-dione is influenced by several factors. Understanding these factors can be crucial for its applications in various fields:

  • Polarity: The presence of hydroxyl (-OH) functional groups in the compound suggests potential for hydrogen bonding with polar solvents, which may enhance its solubility in water.
  • Hydrophobic regions: Conversely, the presence of multiple carbon rings and substituents could lead to regions of hydrophobicity, which may limit solubility in polar solvents.
  • Solvent choice: The solubility is likely to be better in organic solvents such as alcohols, ethers, or aromatic hydrocarbons due to similar non-polar character compared to the molecule itself.
  • Temperature: As with many compounds, increased temperature may improve solubility, making it important to consider during dissolution processes.

In summary, while this compound may exhibit variable solubility depending on the solvent and conditions used, its dual nature of polar and non-polar characteristics means it could dissolve well in a range of both polar and non-polar solvents. Ultimately, experimental data will provide the most reliable information on its solubility profile.

Interesting facts

Interesting Facts about (1R,7R,17R)-4-ethylidene-7-hydroxy-7-methyl-6-methylene-2,9-dioxa-14-azatricyclo[9.5.1.014,17]heptadec-11-ene-3,8-dione

This complex organic compound is a fascinating subject of study in the realm of chemistry due to its unique structure and potential applications. Here are some intriguing insights:

  • Chirality: The designation of (1R,7R,17R) indicates that the compound possesses multiple chiral centers. Chirality is critical in the design of pharmaceuticals, as the orientation of molecules can greatly affect their biological activity.
  • Functional Groups: This compound features diverse functional groups, notably the hydroxyl (-OH) and methylene (C=CH2) groups. These groups are essential in influencing the compound's reactivity and interactions with other molecules.
  • Structural Complexity: The presence of a tricyclic structure contributes to its three-dimensional shape, which could be of interest in drug design. Such intricate structures often exhibit unique properties.
  • Potential Applications: Given its unique characteristics, this compound may have potential uses in fields such as medicinal chemistry and materials science. Compounds with similar structures are often explored for their therapeutic benefits or as advanced materials.
  • Synthesis Challenges: The synthesis of such complex compounds can be challenging and requires sophisticated techniques in organic chemistry. Students and researchers alike can benefit from studying the synthetic pathways used to create such molecules.

Overall, (1R,7R,17R)-4-ethylidene-7-hydroxy-7-methyl-6-methylene-2,9-dioxa-14-azatricyclo[9.5.1.014,17]heptadec-11-ene-3,8-dione serves as a prime example of how complex organic molecules can lead to new discoveries and innovations in science and industry.

Synonyms
Prestwick0_000599
Prestwick1_000599
SPBio_002697
LSM-2853
NCI60_002608
NS00031761
Q27164380