Introduction of CAS:764-37-4 | OXY-3-PENTENE
3-Penten-1-ol, (3E)-, also known as trans-3-penten-1-ol, is an important volatile organic compound (VOC) in the environment. It is a colorless liquid with a pleasant, mild odor. It is a member of the pentenol family and is used in a variety of applications, including as a flavor and fragrance ingredient, as a solvent and as a chemical intermediate. In addition, 3-penten-1-ol is a major component of many plant essential oils, such as lavender, mint and citrus.
Specification of CAS:764-37-4 | OXY-3-PENTENE
|
ITEMS |
SPECIFICATION |
|
Boiling point |
136-137 °C |
|
Acidity coefficient (pKa) |
11.82±0.20(Predicted) |
|
Density |
0.8467 g/cm3 |
|
Form |
oily |
|
Color |
colourless |
|
Storage condition |
Amber Vial, Refrigerator, Under inert atmosphere |
Research Application of CAS:764-37-4 | OXY-3-PENTENE
Quantum Computational Studies
A study by González and Arrate (2020) used Density Functional Theory (DFT) to perform quantum calculations on 1-penten-3-ol. They determined the ground electronic state of the compound and its conformers, providing valuable insights into its electronic structure and potential reactivity (González & Arrate, 2020).
Computational Quantum Calculations
In the field of computational chemistry, Density Functional Theory (DFT) has been used to study the ground electronic state of 1-penten-3-ol and its conformers. This research provides insights into the electronic properties and potential reactivity of the compound (González & Arrate, 2020).
Polymer Science
1-Pentene, a related compound, has been used in polymer science, particularly in polymerization studies in the presence of deuterium. This research is significant for understanding the mechanisms of stereospecific polymerization (Pino & Galimberti, 1989).
Atmospheric Chemistry
Jiménez et al. (2009) evaluated the environmental impact of compounds like 1-penten-3-ol, particularly their removal processes in the atmosphere. This study provides insights into the atmospheric chemistry and environmental fate of such compounds (Jiménez et al., 2009).
Ozonolysis Research
Dwyer et al. (2010) investigated the gas-phase ozonolysis of 1-penten-3-ol. Their findings contribute to understanding the reaction mechanisms and product formation in atmospheric chemistry, particularly regarding biogenic unsaturated compounds (Dwyer et al., 2010).


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