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Ethyl-deoxoartemisinin

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Identification
Molecular formula
C17H26O6
CAS number
63968-64-9
IUPAC name
1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one
State
State

The compound is in a solid state at room temperature. It's typically found as a crystalline substance, which contributes to its robust and stable form.

Melting point (Celsius)
145.00
Melting point (Kelvin)
418.15
Boiling point (Celsius)
165.00
Boiling point (Kelvin)
438.15
General information
Molecular weight
315.36g/mol
Molar mass
315.3620g/mol
Density
1.3243g/cm3
Appearence

The compound appears as a white crystalline solid under standard conditions. The compound's crystal lattice contributes to its distinct solid form with high clarity, resembling typical crystalline structures.

Comment on solubility

Solubility of 1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one

The solubility of 1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one (C17H26O6) is a complex subject that can be influenced by various factors including temperature, solvent polarity, and molecular interactions. Understanding the solubility characteristics of this compound can provide insight into its usability in different applications. Here are some key points to consider:

  • Polarity: Due to the presence of multiple ether and carbonyl functional groups, this compound is likely to exhibit polar characteristics, enhancing its solubility in polar solvents such as water and alcohols.
  • Hydrogen Bonding: The hydroxyl groups may participate in hydrogen bonding, which can further improve solubility in water or other hydrogen-bonding solvents.
  • Temperature Sensitivity: Like many chemical compounds, its solubility can increase with temperature. Thus, conducting solubility tests at elevated temperatures may yield positive results.
  • Solvent Compatibility: The compound may show varying degrees of solubility in organic solvents, suggesting potential compatibility with non-polar solvents or various hydrocarbon mixtures.

In summary, while 1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one possesses a variety of functional groups that could enhance its solubility, its overall behavior in solution is highly dependent on the surrounding conditions. Thus, experimental solubility measurements are recommended for precise applications.

Interesting facts

Interesting Facts about 1,5,9-Trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one

This compound is a fascinating organic molecule that belongs to a unique class of compounds due to its complex structure. Its intriguing hydrocarbon framework and functional groups make it a subject of study in various fields of chemistry.

Structural Features

  • Tetraoxatetracyclo Structure: This compound exhibits a distinctive tetraoxatetracyclo structure, meaning it's composed of multiple interconnected rings containing oxygen atoms. This structural characteristic contributes to its interesting chemical reactivity.
  • Functionalization: The presence of methyl groups along with oxo functionality provides insights into its potential reactivity and applications in synthetic chemistry.

Potential Applications

  • Pharmaceutical Research: Compounds with complex oligocyclic frameworks are often investigated for bioactivity, potentially yielding new medicinal compounds.
  • Material Science: The unique properties of such compounds can lead to innovative materials, possibly in nanotechnology or polymer sciences.

Chemical Insight

Understanding the synthesis of 1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one can provide valuable lessons in organic synthesis techniques. Chemists often refer to the challenge of creating such complex structures as a “game of strategy”.

Quote from a Chemist

As one chemist stated, “The beauty of organic chemistry lies in the infinite possibilities crafting new compounds brings.” This compound exemplifies this beauty through its intricate arrangement of atoms.

In conclusion, this compound not only serves as an excellent example of complex organic structures but also opens doors to the exploration of its applications in various scientific fields. Its study demonstrates the amusing intersection of creativity and systematic science in the world of chemistry.

Synonyms
63968-64-9
Artemisinine
3,6,9-trimethyloctahydro-3,12-epoxy[1,2]dioxepino[4,3-i]isochromen-10(3H)-one
GNF-PF-5671
Qing Hau Sau
(+)-Arteannuin
497820-35-6
SR-01000783029
TNP00107
NSC369397
NSC-369397
MLS001195096
CHEMBL345083
SCHEMBL8011257
DTXSID20860789
BLUAFEHZUWYNDE-UHFFFAOYSA-N
HMS1607A03
HMS2864N18
AKOS001483011
NCGC00017227-02
NCGC00142461-01
SMR000554414
SY057423
NS00077502
SR-01000783029-3
SR-01000783029-5
1,5,9-trimethyl-11,14,15,16-tetraoxatetracyclo[10.3.1.04,13.08,13]hexadecan-10-one
3,6,9-Trimethyloctahydro-12H-3,12-epoxypyrano[4,3-j][1,2]benzodioxepin-10(3H)-one
11,14,15,16-Tetraoxatetracyclo[10.3.1.0(4,13).0(8,13)]hexadecan-10-one, 1,5,9-trimethyl-