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Conversion of carbon dioxide to propionaldehyde over cobalt and rhodium nanoparticles supported on MIL-53 (Al) metal–organic framework


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Abstract

The two-step conversion of carbon dioxide to propionic acid and propionaldehyde has been studied in the presence of novel catalysts, cobalt and rhodium nanoparticles supported on MIL-53(Al) microporous metal–organic framework. The first step is hydrogenation of carbon dioxide with formation of synthesis gas over cobalt-containing catalyst Co/MIL-53(Al) (500°C, 1 atm), and the second step is continuous (without separation) Rh/MIL-53 (Al)-catalyzed hydroformylation of ethylene with the synthesis gas formed in the first step.

About the authors

A. L. Tarasov

Zelinskii Institute of Organic Chemistry

Email: lmk@ioc.ac.ru
Russian Federation, Leninskii pr. 47, Moscow, 119991

V. I. Isaeva

Zelinskii Institute of Organic Chemistry

Author for correspondence.
Email: lmk@ioc.ac.ru
Russian Federation, Leninskii pr. 47, Moscow, 119991

I. P. Beletskaya

Zelinskii Institute of Organic Chemistry; Faculty of Chemistry

Email: lmk@ioc.ac.ru
Russian Federation, Leninskii pr. 47, Moscow, 119991; Leninskie gory 1, Moscow, 119991

L. M. Kustov

Zelinskii Institute of Organic Chemistry; Faculty of Chemistry

Email: lmk@ioc.ac.ru
Russian Federation, Leninskii pr. 47, Moscow, 119991; Leninskie gory 1, Moscow, 119991

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