High-Entropy Lanthanide-Organic Framework as an Efficient Heterogeneous Catalyst for Cycloaddition of CO with Epoxides and Knoevenagel Condensation.

Chemistry

School of Materials Science and Chemical Engineering, Resource Recycling of Ningbo University -, Ningbo Shuangneng Environmental Technology Co. Ltd., Ningbo University, Ningbo, 315211.

Published: July 2024

AI Article Synopsis

  • - Multimetallic frameworks (HE-LnMOFs) showed improved efficiency in CO cycloesterification and Knoevenagel reactions compared to traditional single-component Ln(III)-MOFs.
  • - HE-LnMOFs demonstrated significant stability, maintaining performance over five cycles while ensuring high conversion and selectivity rates.
  • - The research highlights the unique catalytic mechanisms of HE-LnMOFs, utilizing multiple unsaturated metal centers as Lewis acid sites, which enhances their application in CO conversion.

Article Abstract

Multimetallic synergistic effects have the potential to improve CO cycloesterification and Knoevenagel reaction processes, outperforming monometallic MOFs. The results demonstrate superior performance in these processes. To investigate this, we created and characterized a selection of single-component Ln(III)-MOFs (Ln=Eu, Tb, Gd, Dy, Ho) and high-entropy lanthanide-organic framework (HE-LnMOF) using solvent-thermal conditions. The experiments revealed that HE-LnMOF exhibited heightened catalytic efficiency in CO cycloesterification and Knoevenagel reactions compared to single-component Ln(III) MOFs. Moreover, the HE-LnMOF displayed significant stability, maintaining their structural integrity after five cycles while sustaining elevated conversion and selectivity rates. The feasible mechanisms of catalytic reactions were also discussed. HE-LnMOF possess multiple unsaturated metal centers, acting as Lewis acid sites, with oxygen atoms connecting the metal, and hydroxyl groups on the ligand serving as base sites. This study introduces a novel method for synthesizing HE-LnMOF and presents a fresh application of HE-LnMOF for converting CO.

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Source
http://dx.doi.org/10.1002/chem.202400756DOI Listing

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