Introduction of CAS:116903-47-0 | Benzol, 1-[(4-methoxyphynyl)ethinyl]-, 4-4-propylcyclohexyl)-, trans-
The synthesis methods for related compounds often involve multi-step organic reactions, including photoisomerization, reductive cleavage, and HPLC isolation, which may apply to our compound of interest. For example, photoisomerization has been used to yield multi-component mixtures of isomers from similar aromatic compounds, which are then separated using HPLC (Englert et al., 1978).
The molecular structure of related compounds is typically established using NMR spectroscopy, including 1H-NMR and 13C-NMR, alongside other techniques like FT-IR and X-ray diffraction. These methods provide insights into the structural configurations and isomer forms (G. Englert, S. H. Weber, M. Klaus, 1978).
Specification of CAS:116903-47-0 | Benzol, 1-[(4-methoxyphynyl)ethinyl]-, 4-4-propylcyclohexyl)-, trans-
|
ITEMS |
SPECIFICATION |
|
Molecular Weight |
332.48 |
|
Boil point |
464.9±38.0 °C(Predicted) |
|
Density |
1.04±0.1 g/cm3(Predicted) |
|
Purity |
98% |
|
Molecular Formula |
C24H28O |
Research Application of CAS:116903-47-0 | Benzol, 1-[(4-methoxyphynyl)ethinyl]-, 4-4-propylcyclohexyl)-, trans-
Isomerization Reactions: Research has explored isomerization reactions under alkaline conditions, highlighting the chemical behavior of similar compounds in the presence of catalysts, temperature, and reaction time optimization (Zhou, 2011).
Cryo-electrochemistry: Investigations into the reductive cleavage of phenyl sulfones and thioethers in tetrahydrofuran (THF) have shown the potential for low-temperature electrochemical studies to provide insights into reaction kinetics and mechanisms (Fietkau et al., 2006), (Paddon et al., 2006).
Synthesis of Derivatives: The synthesis and study of derivatives of similar compounds, evaluating their antioxidant, anti-inflammatory, and gastroprotector activities, demonstrate the chemical versatility and biological relevance of these molecules (Freire et al., 2005).
Mechanistic Probes in Organic Reactions: Cyclopropyl alkynes as probes suggest the utility of structurally similar compounds in distinguishing between vinyl radical and ionic intermediates, providing a method for probing reaction mechanisms (Gottschling et al., 2005).
High-pressure Vapor-phase Reactions: Studies on the hydrodeoxygenation of lignin-derived compounds to hydrocarbons using bimetallic catalysts reveal the potential of related compounds in the production of renewable chemicals and fuels (Yohe et al., 2016).
Sensing Applications: The synthesis of organometallic compounds incorporating functionalities similar to the compound of interest has led to the development of sensors for picric acid, showcasing the application of these molecules in detecting explosives (Samanta & Mukherjee, 2013).


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