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Chiral Ligand-Decorated Rhodium Nanoparticles Incorporated in Covalent Organic Framework for Asymmetric Catalysis. | LitMetric

Chiral Ligand-Decorated Rhodium Nanoparticles Incorporated in Covalent Organic Framework for Asymmetric Catalysis.

Angew Chem Int Ed Engl

Hefei National Research Center for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui, 230026, P. R. China.

Published: November 2024

AI Article Synopsis

  • Metal nanoparticles (NPs), specifically Rh NPs, show promise in catalysis but need a chiral microenvironment for effective conversion and enantioselectivity.
  • By modifying Rh NPs with chiral diene ligands (Lx) and embedding them in a covalent organic framework (COF), researchers found an active Rh-Lx interface that improves catalytic performance.
  • The study revealed that varying the functional groups on the chiral ligands enhances enantioselectivity significantly, with a maximum of 95.6% ee, largely due to hydrogen-bonding interactions between Lx and nitroalkenes.

Article Abstract

While metal nanoparticles (NPs) have demonstrated their great potential in catalysis, introducing chiral microenvironment around metal NPs to achieve efficient conversion and high enantioselectivity remains a long-standing challenge. In this work, tiny Rh NPs, modified by chiral diene ligands (Lx) bearing diverse functional groups, are incorporated into a covalent organic framework (COF) for the asymmetric 1,4-addition reactions between arylboronic acids and nitroalkenes. Though Rh NPs hosted in the COF are inactive, decorating Rh NPs with Lx creates the active Rh-Lx interface and induces high activity. Moreover, chiral microenvironment modulation around Rh NPs by altering the groups on chiral diene ligands greatly optimizes the enantioselectivity (up to 95.6 % ee). Mechanistic investigations indicate that the formation of hydrogen-bonding interaction between Lx and nitroalkenes plays critical roles in the resulting enantioselectivity. This work highlights the significance of chiral microenvironment modulation around metal NPs by chiral ligand decoration for heterogeneous asymmetric catalysis.

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Source
http://dx.doi.org/10.1002/anie.202412643DOI Listing

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