Introduction of CAS:183582-92-5 | 1,3,5-Cyclohexanetricarbonitrile (cis- and trans- mixture)
1,3,5-Cyclohexanetricarbonitrile (also known as this compound, or CCT) is an organic compound with the molecular formula C6H9N3. It is a colorless, odorless solid with a melting point of 68 °C. CCT is an important intermediate in the synthesis of various industrial chemicals, such as polymers, pharmaceuticals, and pesticides. It is also used as a reagent in organic synthesis and as a catalyst in the production of polymers.
Specification of CAS:183582-92-5 | 1,3,5-Cyclohexanetricarbonitrile (cis- and trans- mixture)
|
ITEMS |
SPECIFICATION |
|
Density |
1.11±0.1 g/cm3(Predicted) |
|
Form |
powder to crystal |
|
Boil point |
200°C/0.2mmHg(lit.) |
|
Color |
White to Almost white |
Research Application of CAS:183582-92-5 | 1,3,5-Cyclohexanetricarbonitrile (cis- and trans- mixture)
Conformational Studies and Chemical Reactions :
Cyclohexane-1,3,5-tricarbonitrile is known for its equilibrium between different isomers and the stereochemical aspects of its reactions. One study explored its different isomer conformations and how it reacts with other compounds like L-(S)-valinol and lithium diisopropylamide. The study delved into various reaction systems and how steric effects and dipole-dipole interactions play a role in determining the product distribution of these reactions (Chuang & Fang, 2001).
Material Science and Engineering :
In material science, cyclohexanepolycarboxylate ligands, including derivatives of 1,3,5-cyclohexanetricarbonitrile, have been studied for their potential applications, especially as magnetic materials. Their coordination chemistry, conformational transformations, and functions are explored to determine their suitability in creating advanced materials (Lin & Tong, 2011).
Photoinitiated Polymerization :
The disk-shaped molecule derivative of 1,3,5-benzenetricarboxamide, which is structurally related to this compound, has been assembled into columnar stacks and polymerized using a photoinitiated process. This research could have implications in creating novel polymeric materials with specific structural and mechanical properties (Masuda et al., 2003).
Study of Ultrafast Dynamics :
Trans-1,3,5-hexatriene, a compound structurally similar to this compound, has been studied for its ultrafast dynamics in solution following photoexcitation. Such studies are crucial in understanding the photophysical and photochemical properties of organic compounds (Ohta et al., 1996).
Supramolecular Chemistry :
Research has been conducted on cyclohexane-1, 3cis, 5cis-tricarboxylic acid, structurally related to this compound, to understand the supramolecular architectures formed in acid-base complexes. The work explores how these structures can lead to various tapes, sheets, and networks, contributing to the understanding of molecular self-assembly (Shan et al., 2003).



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