Jing Chen

Beijing Institute of Technology

5 South Zhongguancun street

Center for Energy and Environmental Policy Researc

Beijing, 100081

China

SCHOLARLY PAPERS

2

DOWNLOADS

93

TOTAL CITATIONS

0

Scholarly Papers (2)

Intramolecular Ternary Active Sites of Imidazole Ionic-Liquid Polymer Immobilized on Magnetic Nanoparticles for Synergistic Catalysis of Co2 Cycloaddition

Number of pages: 37 Posted: 24 Nov 2022
Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology and Beijing Institute of Technology
Downloads 37 (997,391)

Abstract:

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Intramolecular synergy, Ionic-liquid polymer, Magnetic separation, CO2 cycloaddition, Density Functional Theory

Intramolecular Ternary Active Sites of Imidazole Ionic-Liquid Polymer Immobilized on Magnetic Nanoparticles for Synergistic Catalysis of Co2 Cycloaddition

Number of pages: 37 Posted: 29 Jul 2022
Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology and Beijing Institute of Technology
Downloads 32 (1,052,508)

Abstract:

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Intramolecular synergy, Ionic-liquid polymer, Magnetic separation, CO2 cycloaddition, density functional theory

2.

Intramolecular Synergistic Catalysis of Ternary Active Sites of Imidazole Ionic-Liquid Polymers Immobilized on Nanosized Cofe2o4@Polystyrene Composites for Co2 Cycloaddition

Number of pages: 132 Posted: 13 Mar 2023
Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology, Beijing Institute of Technology and Beijing Institute of Technology
Downloads 24 (1,118,203)

Abstract:

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Ionic-liquid polymer, Intramolecular synergy, Protective effect, Magnetic separation, CO2 cycloaddition, Density Functional Theory