Issue 11, 2022

A heterogeneous Rh/CPOL-BINAPa&PPh3 catalyst for hydroformylation of olefins: chemical and DFT insights into active species and the roles of BINAPa and PPh3

Abstract

Porous organic polymers (CPOL-BINAPa&PPh3 and CPOL-BINAPa&PhPh3) were synthesized via copolymerization of a divinyl-functionalized phosphoramidite ligand (2vBINAPa) and various trivinyl-monomers (3vPPh3 and 3vPhPh3). After metalation with Rh(acac)CO2, Rh/CPOL-BINAPa&PPh3 showed the better catalytic performance than Rh/CPOL-BINAPa&PhPh3 in the heterogeneous hydroformylation. A corresponding catalytic Rh–H species has been investigated by FT-IR and/or NMR spectroscopy. The results indicated that two kinds of Rh–H species were formed in the Rh/CPOL-BINAPa&PPh3 catalyst. The ee species containing the BINAPa ligand contributed to the high activity in hydroformylation. The three P coordinated Rh–H species consisting of BINAPa and PPh3 ligands resulted in the high regioselectivity owing to the steric hindrance. Furthermore, the DFT calculations and cycle test results of the catalysts indicated that the PPh3 moieties could improve the stability of the Rh–H species, prevent dissociation of Rh from the BINAPa moieties and reduce the loss of Rh in the catalytic process.

Graphical abstract: A heterogeneous Rh/CPOL-BINAPa&PPh3 catalyst for hydroformylation of olefins: chemical and DFT insights into active species and the roles of BINAPa and PPh3

Supplementary files

Article information

Article type
Communication
Submitted
23 Feb 2022
Accepted
07 May 2022
First published
09 May 2022

Catal. Sci. Technol., 2022,12, 3440-3446

A heterogeneous Rh/CPOL-BINAPa&PPh3 catalyst for hydroformylation of olefins: chemical and DFT insights into active species and the roles of BINAPa and PPh3

J. Zhang, J. Li, K. Li, J. Zhao, Z. Yang, L. Zong, J. Chen, C. Xie, X. Zhao and X. Jia, Catal. Sci. Technol., 2022, 12, 3440 DOI: 10.1039/D2CY00370H

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