Heterogeneous hydroformylation of propene over surface rhodium coordinated by immobilized multi-N ligands

Olefin hydroformylation is an extremely important reaction for producing bulk oxygen-containing organic functional molecules and homogeneous rhodium catalysts with organic phosphorous ligands are most commonly used. We report here a highly active heterogeneous catalyst for propene hydroformylation with Rh immobilized by alumina bonded 3-trimethoxysilylpropyl-diethyle-netriamine, of which ligand is more readily available, inexpensive, low toxic and no loss in reaction. The catalyst Rh-NQ62/Al 2 O 3 shows a TOF value as high as 710 h −1 for propene conversion to C 4 oxygenates in selectivity higher than 99% in a fixed-bed reactor and sustains stable for at least 1000 h without any deactivation. Characterization and theoretical calculation reveal that the atomically dispersed Rh species in surface-bound configurations by the multi-N ligand effectively promotes the heterolytic cleavage of H 2 at the Rh-N site and enhances the overall propene hydroformylation. We envisage the work establishes a blueprint for development of better catalysts using multi-N ligands for heterogeneous hydroformylations.

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Journal
Science Advances
Published
2026-09-30
DOI
https://doi.org/10.1126/sciadv.aej1532
Primary Topic
Organometallic Complex Synthesis and Catalysis
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article
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article

Heterogeneous hydroformylation of propene over surface rhodium coordinated by immobilized multi-N ligands

Weiping Ding, Xiangke Guo, Yu Jiang, Luming Peng et al.
Science Advances
Organometallic Complex Synthesis and Catalysis
article

Heterogeneous hydroformylation of propene over surface rhodium coordinated by immobilized multi-N ligands

Weiping Ding, Xiangke Guo, Yu Jiang, Luming Peng, Yan Zhu, Xuefeng Guo, Bingqing Ge, Nianhua Xue, Shuhua Li, Yu Shao, Qiang He, Chenyang Shen
article en

Abstract

Olefin hydroformylation is an extremely important reaction for producing bulk oxygen-containing organic functional molecules and homogeneous rhodium catalysts with organic phosphorous ligands are most commonly used. We report here a highly active heterogeneous catalyst for propene hydroformylation with Rh immobilized by alumina bonded 3-trimethoxysilylpropyl-diethyle-netriamine, of which ligand is more readily available, inexpensive, low toxic and no loss in reaction. The catalyst Rh-NQ62/Al 2 O 3 shows a TOF value as high as 710 h −1 for propene conversion to C 4 oxygenates in selectivity higher than 99% in a fixed-bed reactor and sustains stable for at least 1000 h without any deactivation. Characterization and theoretical calculation reveal that the atomically dispersed Rh species in surface-bound configurations by the multi-N ligand effectively promotes the heterolytic cleavage of H 2 at the Rh-N site and enhances the overall propene hydroformylation. We envisage the work establishes a blueprint for development of better catalysts using multi-N ligands for heterogeneous hydroformylations.

Science AdvancesVol. 12(40)
Ministry of Education and Child Care (CA), Nanjing University (CN)
Openalex Percentile: Top 23%
Organometallic Complex Synthesis and Catalysis
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Heterogeneous hydroformylation of propene over surface rhodium coordinated by immobilized multi-N ligands — Weiping Ding, Xiangke Guo, et al. · Science Advances (2026) | TGRS Research Map | TGRS