Interesting facts
Interesting Facts about 2,2,4,6,6,8-Hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane
This compound, known for its complex structure and intriguing properties, belongs to a unique class of siloxane compounds. Here are some engaging insights:
- Diverse Applications: The diverse applications of this compound are noteworthy, particularly in the realms of materials science and polymer chemistry. Its unique properties can contribute to the development of novel, high-performance materials.
- Chemical Structure: The intricate structure of 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane consists of alternating silicon and oxygen atoms, forming a siloxane backbone. This backbone contributes to its stability and functional versatility.
- Silicon-Oxygen Linkages: The presence of silicon-oxygen linkages in this compound is particularly relevant for applications in coatings and sealants, where durability and resistance to environmental factors are crucial.
- Phenyl Substituents: The phenyl substituents not only enhance the compound's physical properties but also contribute to its potential as a ligand in coordination chemistry. Their involvement could facilitate the formation of metal complexes, broadening its utility.
- Future Research: The ongoing research into siloxane compounds like this one continues to reveal new applications and improvements. The results could influence everything from nanotechnology to biomaterials.
In summary, 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane represents a fascinating intersection of structure and function, leaving a significant mark in the fields of polymer science and advanced materials. Its unique properties warrant further exploration and innovation.
Synonyms
Quadrosilan
4657-20-9
33204-76-1
2,6-DIPHENYLHEXAMETHYLCYCLOTETRASILOXANE
Quadrosilan;KABI-1774
Cyclotetrasiloxane, 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-, cis-
C5KT601WPM
D7L9AC9Z6E
2,2,4,6,6,8-hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane
2,2,4,6,6,8-Hexamethyl-4,8-diphenylcyclotetrasiloxane
Cyclotetrasiloxane, 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-
cis-2,2,4,6,6,8-Hexamethyl-4,8-diphenylcyclotetrasiloxane
Cisobitan
33204-77-2
Quadrosilane
Quadrosilanum
2,2,4,6,6,8-Hexamethyl-4,8-diphenylcyclotetrasiloxane, trans-
Kabi 1774
Quadrosilane [INN-French]
Quadrosilanum [INN-Latin]
Quadrosilan [INN:BAN]
EINECS 251-406-1
UNII-C5KT601WPM
2,6-cis-Diphenylhexamethylcyclotetrasiloxane
Cyclic 2,6-cis-diphenylhexamethylcyclotetrasiloxane
2,6-Diphenyl-2,4,6,6,8,8-hexamethylcyclotetrasiloxane
CYCLOTETRASILOXANE, 2,6-DIPHENYLHEXAMETHYL-, Z-
cis-2,6-Diphenyl-2,4,4,6,8,8-hexamethylcyclotetrasiloxane
trans-2,6-Diphenyl-2,4,4,6,8,8-hexamethylcyclotetrasiloxane
Cyclotetrasiloxane, 2,6-diphenyl-2,4,4,6,8,8-hexamethyl-, (Z)-
QUADROSILAN [INN]
UNII-D7L9AC9Z6E
UNII-MM48TFA73C
CYCLOTETRASILOXANE, 2,6-DIPHENYL-2,4,4,6,8,8-HEXAMETHYL-, (E)-
MM48TFA73C
SCHEMBL1864092
SCHEMBL2110064
DTXSID3063546
ZTQZMPQJXABFNC-UHFFFAOYSA-N
Cyclotetrasiloxane, 2,6-diphenyl-2,4,4,6,8,8-hexamethyl-
DTXSID601015701
Cyclotetrasiloxane, 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-, trans-
AKOS040749258
Cyclotetrasiloxane, hexamethyldiphenyl-
NS00060392
NS00127347
Q27275217
TRANS-2,6-DIPHENYLHEXAMETHYLCYCLOTETRASILOXANE
2,2,4,6,6,8-HEXAMETHYL-4,8-DIPHENYLCYCLOTETRASILOXANE, CIS-
TRANS-2,2,4,6,6,8-HEXAMETHYL-4,8-DIPHENYLCYCLOTETRASILOXANE
30026-85-8
Solubility of 2,2,4,6,6,8-Hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane
The solubility of 2,2,4,6,6,8-hexamethyl-4,8-diphenyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane can be quite intriguing due to its complex structure. Understanding its solubility can help predict its behavior in different environments and applications. While specific solubility data might not be readily available, several factors contribute to the solubility profile of this compound:
In summary, while the data on the solubility of this particular compound may not be abundantly documented, it is essential to consider the intricate interplay between its structural features and the solvent characteristics. As a result, one might conclude that the solubility could vary significantly depending on the system, which emphasizes the need for empirical exploration in diverse conditions.