Interesting facts
Interesting Facts About 4-Trichlorosilylbutanenitrile
4-Trichlorosilylbutanenitrile is a fascinating organic compound that showcases the unique interplay between silicon and organic chemistry. Here are some intriguing aspects:
- Silicon's Versatility: Silicon, a key element in this compound, is notable for its ability to form various bonds and create diverse structures. Its inclusion in organic molecules often leads to new properties and reactivities.
- Functional Groups: The presence of the nitrile group (–C≡N) in 4-trichlorosilylbutanenitrile enhances its chemical reactivity, making it an essential precursor in organic synthesis and materials science.
- Applications in Synthesis: This compound is utilized as a reagent in various chemical reactions, particularly in the fields of materials science and organic synthesis. Its trichlorosilyl group contributes to the formation of siloxane bonds, crucial for creating silicone-based materials.
- Toxicity and Safety: As with many organosilicon compounds, handling 4-trichlorosilylbutanenitrile requires caution due to its toxic and potentially hazardous nature. It is important to use appropriate safety measures when working with this compound in the laboratory.
- Research Interest: The unique properties of 4-trichlorosilylbutanenitrile make it a subject of ongoing research, particularly in the development of new polymers and coatings, and in studying its reactivity under different conditions.
In conclusion, 4-trichlorosilylbutanenitrile is more than just a compound; it represents the intersection of silicon chemistry and organic synthesis, revealing endless possibilities for innovation in chemical applications. As noted by chemists, "the future of materials lies in understanding how we can manipulate these versatile components to create the best solutions for modern challenges."
Synonyms
3-Cyanopropyltrichlorosilane
4-Trichlorosilylbutanenitrile
4-(Trichlorosilyl)butyronitrile
Butanenitrile, 4-(trichlorosilyl)-
Trichloro(3-cyanopropyl)silane
4-Cyanobutyltrichlorosilane
gamma-Cyanopropyltrichlorosilane
(3-Cyanopropyl) trichlorosilane
EINECS 213-990-6
UNII-05M8IU15R8
BRN 0906924
4-(Trichlorosilyl)-butyronitrile
.gamma.-Cyanopropyltrichlorosilane
3-cyanopropyl trichlorosilane
DTXSID5061455
4-04-00-04272 (Beilstein Handbook Reference)
CC3555
DTXCID9033056
hmffoeblyhlrqn-uhfffaoysa-n
1071-27-8
Butyronitrile, 4-(trichlorosilyl)-
(3-cyanopropyl)trichlorosilane
Trichlor-3-kyanpropylsilan
Silane, trichloro(3-cyanopropyl)-
SILANE, (3-CYANOPROPYL)TRICHLORO-
05M8IU15R8
Trichlor-3-kyanpropylsilan [Czech]
4-(Trichlorosilyl)butanenitrile
MFCD00013832
cyanopropyltrichlorosilane
SCHEMBL523644
4-(Trichlorosilyl)butanenitrile #
3-Cyanopropyltrichlorosilane, 97%
AKOS015916390
AS-85171
DB-040734
NS00041910
Q27236126
Solubility of 4-trichlorosilylbutanenitrile
The solubility of 4-trichlorosilylbutanenitrile is influenced by its unique structure, which includes both hydrophobic and polar functional groups. Understanding its solubility profile can be summarized as follows:
In conclusion, if you are working with 4-trichlorosilylbutanenitrile, consider the primary solvents mentioned above for optimal solubility as well as the environmental conditions to achieve desired outcomes.