Interesting facts
Interesting Facts about 2,2,4,4,6,6,8,8-Octamethyl-1,3,5,7,2,4,6,8-Tetraoxatetrasilocane
This fascinating compound, known for its complex structure, presents numerous intriguing features for both chemists and enthusiasts alike.
Chemical Structure
- Silicon-oxygen backbone: The compound consists of a siloxane framework, showcasing how silicon can be arranged to form unique chain-like structures.
- Methyl substituents: The presence of eight methyl groups contributes to the overall stability and versatility of the compound, impacting its chemical reactivity.
Applications
This compound finds applications in diverse fields, owing to its unique properties:
- Silicon-based polymers: It can serve as a significant precursor in the formation of various silicon-based materials.
- Cosmetic Industry: Due to its favorable properties, it is explored in formulations for skin and hair products.
- Material Science: Its properties are useful for developing materials with tailored performance characteristics.
Scientific Importance
The study of octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane raises questions about the limits of siloxane chemistry:
- Reactivity: Investigating how the methyl groups influence reactivity can lead to new pathways for chemical synthesis.
- Stability: Understanding its stability in different environments can provide insights into siloxane-based technology.
Quote from a Chemist
"The complexity of compounds like 2,2,4,4,6,6,8,8-octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane unveils new possibilities in the realm of materials science and organic chemistry."
With its unique structure and properties, this compound not only broadens our understanding of silicon-based materials but also paves the way for innovative applications in various industries.
Synonyms
OCTAMETHYLCYCLOTETRASILOXANE
556-67-2
Cyclotetrasiloxane, octamethyl-
2,2,4,4,6,6,8,8-Octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane
Oktamethylcyklotetrasiloxan
OMCTS
Cyclic dimethylsiloxane tetramer
NUC silicone VS 7207
Union carbide 7207
Silicone SF 1173
Cyclomethicone 4
Oktamethylzyklotetrasiloxan
CCRIS 1327
HSDB 6131
Oktamethylcyklotetrasiloxan [Czech]
EINECS 209-136-7
KF 994
NSC 345674
UNII-CZ227117JE
SF 1173
UC 7207
VS 7207
BRN 1787074
DTXSID7027205
CHEBI:25640
NSC-345674
2,2,4,4,6,6,8,8-octamethyl-1,3,5,7,2,4,6,8-tetroxatetrasilocane
DTXCID107205
HMMGMWAXVFQUOA-UHFFFAOYSA-
OCTAMETHYCYCLOTETRASILOXANE
EC 209-136-7
CYCLOMETHICONE 4 [USP-RS]
4-04-00-04125 (Beilstein Handbook Reference)
CYCLOTETRASILOXANE, OCTAMETHYL
CO9810
OCTAMETHYLCYCLOTETRASILOXANE [MI]
OCTAMETHYLCYCLOTETRASILOXANE [HSDB]
O9810
CYCLOMETHICONE 4 (USP-RS)
Oktamethylcyklotetrasiloxane
2,2,4,4,6,6,8,8-Octamethylcyclotetrasiloxane
Cyclotetrasiloxane, 2,2,4,4,6,6,8,8octamethyl
hmmgmwaxvfquoa-uhfffaoysa-n
inchi=1/c8h24o4si4/c1-13(2)9-14(3,4)11-16(7,8)12-15(5,6)10-13/h1-8h3
Dimethylsiloxane Cyclic Tetramer
CZ227117JE
MFCD00003269
CAS-556-67-2
bmse000765
octamethyl-cyclotetrasiloxane
SCHEMBL18354
BIDD:ER0157
CHEMBL1869229
Octamethylcyclotetrasiloxane, 98%
Tox21_201398
Tox21_300547
MSK002144
NSC345674
AKOS008901191
NCGC00164099-01
NCGC00164099-02
NCGC00164099-03
NCGC00254406-01
NCGC00258949-01
1ST002144
MSK002144-1000
CS-0213747
NS00043628
O0142
F83065
Octamethylcyclotetrasiloxane, analytical standard
1ST002144-1000
Cyclotetrasiloxane, 2,2,4,4,6,6,8,8-octamethyl-
Q2013804
Octamethylcyclotetrasiloxane Solution in Methanol, 1000?g/mL
Octamethylcyclotetrasiloxane Solution in Methanol, 1000mug/mL
2,2,4,4,6,6,8,8-Octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane #
Cyclomethicone 4, United States Pharmacopeia (USP) Reference Standard
D4 Cyclomethicone, Pharmaceutical Secondary Standard; Certified Reference Material
d-4
Solubility of 2,2,4,4,6,6,8,8-Octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane
The solubility of 2,2,4,4,6,6,8,8-octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane is a topic of interest due to its unique chemical structure and properties.
Here are some key points regarding its solubility:
In summary, 2,2,4,4,6,6,8,8-octamethyl-1,3,5,7,2,4,6,8-tetraoxatetrasilocane demonstrates varied solubility behavior, primarily favoring nonpolar environments. Scientists often consider these factors when studying its applications and reactivity in different chemical contexts.