Materials Today Chemistry, volume 21, pages 100509
2D covalent organic framework: a photoactive heterogeneous catalyst for chemical fixation of CO2 over propargyl amines in water under sunlight
P. K Sarkar
1
,
A.R. Chowdhury
1
,
S. Biswas
1
,
Aslam Khan
2
,
S.Z. Islam
1
Publication type: Journal Article
Publication date: 2021-08-01
Journal:
Materials Today Chemistry
scimago Q1
SJR: 1.239
CiteScore: 8.9
Impact factor: 6.7
ISSN: 24685194
Materials Chemistry
Electronic, Optical and Magnetic Materials
Catalysis
Colloid and Surface Chemistry
Polymers and Plastics
Biomaterials
Abstract
We have demonstrated the efficient synthesis of Pd(II)-based 2D mesoporous covalent organic framework (COF) along with a small amount of Pd(0), which is characterized by different characterization tools. These studies suggest that this material with low bandgap energy (Eg) of 1.73 eV can exhibit great photocatalytic activity toward CO 2 fixation reaction. Therefore, we have applied the Pd(II)-loaded COF as a new and effective photocatalyst for the preparation of oxazolidinone through the chemical fixation of CO 2 . The reaction takes place in green solvent (H 2 O) in absence of any base and under the sunlight at atmospheric pressure of CO 2 without using any cocatalyst. The reaction does not happen in the dark. In this context, we showed that a turnover number (TON) of 3.392 × 10 3 can be achieved using the catalytic cycle under sunlight. The light dependency of the reaction is also checked by a control experiment via light modulation between light on and off. Furthermore, the catalyst shows efficient reusability for multiple reaction cycles, and also the heterogeneity test of the material suggests minimal active metal leaching during the catalysis reaction cycles. These results for the photocatalytic synthesis of oxazolidinone by CO 2 incorporation over COF under sunlight open a new environment-friendly green pathway for the formation of oxazolidinones.
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