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Fisetinidin

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Identification
Molecular formula
C15H12O6
CAS number
1257-94-3
IUPAC name
[18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate
State
State

Fisetinidin is solid at room temperature. As a crystalline compound, it presents a structured, orderly form typical of many organic compounds, particularly the flavonoid class, to which it belongs.

Melting point (Celsius)
280.00
Melting point (Kelvin)
553.15
Boiling point (Celsius)
455.00
Boiling point (Kelvin)
728.15
General information
Molecular weight
273.26g/mol
Molar mass
273.2550g/mol
Density
1.5123g/cm3
Appearence

Fisetinidin is typically found as a reddish crystalline solid. It belongs to the class of flavonoids, which are known for their bright pigments, commonly manifesting in shades of red or yellow. These pigments are often used in biological applications such as stains for plant studies.

Comment on solubility

Solubility of [18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate

The solubility of C15H12O6 can be categorized as follows:

  • Polarity: The presence of multiple oxygen atoms in the structure suggests that the compound may exhibit polar characteristics, potentially enhancing its solubility in polar solvents such as water.
  • Organic Solvents: Compounds with alkyl substituents, like the methoxymethyl and acetate groups in this molecule, may also dissolve well in non-polar organic solvents including hexane and chloroform.
  • Hydrogen Bonding: The ability to form hydrogen bonds due to hydroxyl and ether groups could contribute to a more favorable solubility profile, especially in aqueous environments.

However, it is crucial to note that the overall solubility may be influenced by the specific temperature and pH of the solution, as well as the presence of other solutes. As such, one might see variability in solubility based on experimental conditions. In summary, while C15H12O6 appears to have promising solubility in certain environments, empirical testing would provide the most accurate and detailed understanding of its solubility characteristics.

Interesting facts

Interesting Facts about [18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate

This compound boasts a complex molecular structure and is a fascinating example of organic chemistry with potential applications in various fields, including pharmacology and materials science. Here are some intriguing aspects to consider:

  • Structural Complexity: The compound is characterized by a unique pentacyclic framework, which makes it stand out in the landscape of organic molecules. Its intricate architecture is a fascinating study for chemists interested in ring systems.
  • Functional Groups: With multiple ketone and ether functional groups, this compound exhibits a variety of chemical behaviors. Understanding these interactions can provide insights into reactivity and stability under different conditions.
  • Potential Biological Activity: Compounds with such complex structures often present opportunities for biological activities. They may exhibit characteristics such as antimicrobial or anti-inflammatory properties that are of great interest in medicinal chemistry.
  • Synthesis Challenges: Creating this compound in the laboratory may present significant challenges due to its elaborate structure. Successful synthesis could be an accomplishment for chemists, pushing the boundaries of current organic synthesis methodologies.
  • Industrial Applications: Due to its unique characteristics, this compound could find applications in the development of advanced materials or as an intermediary in the synthesis of novel drug molecules.

As noted by leading chemists, "The beauty of chemistry lies in understanding how the simplest of elements can come together to create complex and useful structures." The exploration of such compounds not only ignites curiosity but also opens the door to groundbreaking discoveries in science and technology.

In conclusion, [18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate is a prime example of the intricacies of chemical compounds, with a wealth of research potential waiting to be explored.

Synonyms
[18-(Methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate
SCHEMBL4896797
CHEBI:91862
DTXSID70860239
LSM-1788
CCG-208056
NCGC00390401-01
LS-14993
DB-082067
Q423565
BRD-A75409952-001-02-4
[(1R,3R,5S,9R,18S)-18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.0^{2,10.0^{5,9.0^{15,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate
1-(Methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b-decahydro-3H-furo[4,3,2-de]indeno[4,5-h][2]benzopyran-11-yl acetate