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CAS:30727-14-1 | 1-ETHYL-3-PYRROLIDINOL

CAS:30727-14-1 | 1-ETHYL-3-PYRROLIDINOL

Molecular Formula:C6H13NO
Molecular Weight:115.17
EINECS:250-310-7
Package:25g 100g 1kg
Worldwide Delivery
Made in China

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Product Introduction

Introduction of CAS:30727-14-1 | 1-ETHYL-3-PYRROLIDINOL

 

Ethyl-3-pyrrolidinol is a heterocyclic organic compound . Its molecular formula is C6H13NO and it has a molecular weight of 115.1735 .

 

A significant application of derivatives related to 1-Ethyl-3-pyrrolidinol is in the synthesis of compounds with antibacterial properties.

 

Specification of CAS:30727-14-1 | 1-ETHYL-3-PYRROLIDINOL

 

ITEMS

SPECIFICATION

Form

clear liquid

Color

Colorless to Brown

Density

0.967 g/mL at 25 °C(lit.)

Storage condition

Sealed in dry,Room Temperature

 

Research Application of CAS:30727-14-1 | 1-ETHYL-3-PYRROLIDINOL

Catalysis and Synthetic Chemistry

1-Ethyl-3-pyrrolidinol related compounds have been utilized in catalysis and synthetic chemistry to create complex molecular structures. For example, an expedient phosphine-catalyzed [4 + 2] annulation process was developed to synthesize highly functionalized tetrahydropyridines, utilizing ethyl 2-methyl-2,3-butadienoate and N-tosylimines. This process highlights the molecule's utility in constructing complex and functional chemical structures with complete regioselectivity and excellent yields (Zhu et al., 2003).

Quantum Chemical Investigation

Quantum chemical calculations have been employed to study the molecular properties of substituted pyrrolidinones, including derivatives related to 1-Ethyl-3-pyrrolidinol. These studies provide insights into the electronic properties such as the highest occupied molecular orbital (HOMO), lowest unoccupied molecular orbital (LUMO) energies, and molecular densities, offering valuable information for the development of new materials and chemicals (Bouklah et al., 2012).

Electropolymerization in Ionic Liquids

The electropolymerization of pyrrole in an ionic liquid containing 1-ethyl-3-methylimidazolium trifluoromethanesulfonate demonstrates the use of 1-Ethyl-3-pyrrolidinol related ionic liquids in material science. This process significantly enhances the polymerization rate, electrochemical capacity, and electroconductivity of polypyrrole films, showcasing the potential for developing advanced materials (Sekiguchi et al., 2002).

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