Heterogeneous Phosphine-Containing Hydroformylation Catalysts Based on Modified Porous Organic Framework

Author:

Van Khanlin'1,Nenasheva M. V.1,Kulikov L. A.1,Akopyan A. V.1,Gorbunov D. N.1

Affiliation:

1. Department of Chemistry, Moscow State University

Abstract

A series of heterogeneous phosphine-containing rhodium hydroformylation catalysts based on porous aromatic frameworks (PAFs) were prepared. The catalysts PAF30-MDEA-TPPTS-Rh (TPPTS is trisodium triphenylphosphine-3,3',3''-trisulfonate, MDEA is methyldiethanolamine fragment) and PAF-30-Im-TPPTS-Rh (Im is imidazole fragment) showed the highest stability in repeated use in 1-hexene hydroformylation. The catalyst PAF-30-MDEA-TPPTS-Rh before and after use in hydroformylation was characterized by elemental C,N,H,S analysis, inductively coupled plasma atomic absorption spectroscopy, low-temperature nitrogen adsorption–desorption, transmission electron microscopy, IR spectroscopy, and X-ray photoelectron spectroscopy. The effect of temperature, pressure, and solvent on the course of hydroformylation in the presence of PAF-30-MDEA-TPPTS-Rh was studied. The catalyst is active in hydroformylation of a series of unsaturated compounds, including functionalized substrates and olefins with internal double bond.

Publisher

The Russian Academy of Sciences

Reference19 articles.

1. Franke R., Selent D., Börner A. Applied hydroformylation // Chem. Rev. 2012. V. 112. N 11. P. 5675-5732. https://doi.org/10.1021/cr3001803

2. Горбунов Д. Н., Волков А. В., Кардашева Ю. С., Максимов А. Л., Караханов Э. А. Гидроформилирование в нефтехимии и органическом синтезе: реализация процесса и решение проблемы рециркуляции гомогенных катализаторов (обзор) // Нефтехимия. 2015. Т. 55. № 6. С. 443-459. https://doi.org/10.7868/S0028242115060040

3. Жучков Д. П., Ненашева М. В., Теренина М. В., Кардашева Ю. С., Горбунов Д. Н., Караханов Э. А. Полимерные гетерогенные катализаторы в гидроформилировании непредельных соединений (обзор) // Нефтехимия. 2021. Т. 61. № 1. С. 5-20. https://doi.org/10.31857/S0028242121010019

4. Liu B., Wang Y., Huang N., Lan X., Xie Z., Chen J. G., Wang T. Heterogeneous hydroformylation of alkenes by Rh-based catalysts // Chem. 2022. V. 8. N 10. P. 2630-2658. https://doi.org/10.1016/j.chempr.2022.07.020

5. Amsler J., Sarma B. B., Agostini G., Prieto G., Plessow P. N., Studt F. Prospects of heterogeneous hydroformylation with supported single atom catalysts //j. Am. Chem. Soc. 2020. V. 142. N 11. P. 5087- 5096. https://doi.org/10.1021/jacs.9b12171

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