Interesting facts
Interesting Facts about Heptadeca-1,8-dien-4,6-diyne-3,10-diol
Heptadeca-1,8-dien-4,6-diyne-3,10-diol is a fascinating organic compound characterized by its unique structure and significant chemical properties. Here are some intriguing points to consider:
- Complex Structure: This compound features a long carbon chain with multiple double and triple bonds, which contributes to its specific reactivity and physical properties. Such structures are often found in natural products and can lead to the synthesis of various derivatives.
- Diverse Applications: Compounds like heptadeca-1,8-dien-4,6-diyne-3,10-diol are valuable in organic chemistry, particularly for the synthesis of advanced materials and as intermediates in pharmaceutical development.
- Hydroxyl Groups: The presence of diol functional groups at both the third and tenth positions enhances the molecule's ability to engage in hydrogen bonding, potentially influencing its solubility and reactivity with other chemical species.
- Biological Significance: Research has shown that compounds with similar structures can exhibit various biological activities, including antimicrobial and antiviral properties. Understanding the behavior of this compound may shed light on its potential as a therapeutic agent.
In summary, heptadeca-1,8-dien-4,6-diyne-3,10-diol is not just a simple compound but a key player in the realm of organic chemistry with diverse implications in materials science and medicinal chemistry. As one continues to explore its properties and behaviors, the possibilities for innovation seem limitless.
Synonyms
Panaxydiol
1,8-Heptadecadiene-4,6-diyne-3,10-diol
1,8-Hdddd
heptadeca-1,8-dien-4,6-diyne-3,10-diol
708257-91-4
DTXSID101284391
IDB25791
NCA91076
Solubility of Heptadeca-1,8-dien-4,6-diyne-3,10-diol
Heptadeca-1,8-dien-4,6-diyne-3,10-diol (C17H24O2) presents unique characteristics concerning its solubility:
It is important to note that the solubility can be influenced by temperature, pressure, and the presence of other solutes. Therefore, empirical testing is essential to determine the solubility limits under specific conditions. As a general rule, “like dissolves like,” meaning that compounds with similar polarity tend to exhibit greater solubility.
In summary, while heptadeca-1,8-dien-4,6-diyne-3,10-diol may exhibit some solubility in polar solvents due to its hydroxyl groups, its long hydrophobic carbon chain likely restricts its solubility primarily to non-polar organic solvents.