Interesting facts
Interesting Facts about 1,4-Dithiaspiro[4.6]undecane
1,4-Dithiaspiro[4.6]undecane is a fascinating compound that belongs to the family of spiro compounds, known for their unique structural configurations. Here are some engaging points about this intriguing chemical:
- Structure and Geometry: This compound features a complex arrangement of ring systems where two sulfur atoms play a crucial role, imparting interesting properties that differ from typical hydrocarbons.
- Therapeutic Potential: Research suggests that compounds with spiro configurations may exhibit promising biological activities, including antimicrobial and anti-inflammatory properties, making them of interest in pharmaceutical studies.
- Material Science Applications: Due to its unique structure, 1,4-Dithiaspiro[4.6]undecane is being investigated for potential use in advanced materials, especially in the design of molecular switches and sensors.
- Synthetic Routes: The synthesis of this compound often involves intricate multi-step reactions, showcasing the versatility of organic synthesis techniques. These methods highlight the creativity and problem-solving skills essential for chemists.
As noted by chemist William H. OKeefe, “In the world of chemistry, it’s often the unusual structures that unlock the greatest mysteries and possibilities.” This quote resonates well with the exploration of compounds like 1,4-Dithiaspiro[4.6]undecane, affirming the notion that unique molecular architectures can lead to groundbreaking discoveries. The ongoing research into its properties continues to unveil new avenues for application in science and technology.
Synonyms
1,4-DITHIASPIRO(4.6)UNDECANE
184-32-7
1,4-dithiaspiro[4.6]undecane
Cycloheptanone ethane-1,2-diyl dithioacetal
BRN 1305252
SCHEMBL22482672
CBZSMDMKLWKHTD-UHFFFAOYSA-
DTXSID30171530
InChI=1/C9H16S2/c1-2-4-6-9(5-3-1)10-7-8-11-9/h1-8H2
Solubility of 1,4-dithiaspiro[4.6]undecane
1,4-dithiaspiro[4.6]undecane, a compound characterized by its unique spiro structure containing sulfur atoms, presents interesting solubility behavior. The solubility of a compound is influenced by its polarity, molecular size, and the presence of functional groups. In the case of 1,4-dithiaspiro[4.6]undecane:
It is important to note that experimental data is essential for determining exact solubility values. In the absence of such data, valuable insights can be gathered from:
In conclusion, the solubility of 1,4-dithiaspiro[4.6]undecane remains an area for further exploration, highlighting the need for detailed studies to paint a clearer picture of its behavior in different solvent systems.