Abstract
In this paper, substituted anilines are industrially obtained by direct hydrogenation of nitroaromatic compounds with molecular H2 using metals as catalysts. Previous theoretical studies proposed that the mechanism of the reaction depends on the nature of the metal used as a catalyst, and that rationally designed bimetallic materials might show improved catalytic performance. Herein, we present IR spectroscopic studies of nitrobenzene interactions with monometallic Ni/SiO2, Cu/SiO2 and Pd/SiO2, and with bimetallic CuNi/SiO2 and CuPd/SiO2 catalysts, both in the absence and presence of H2, combined with density functional theory (DFT) calculations on selected bime-tallic NiCu(111) and PdCu(111) models. The results obtained experimentally confirm that the reaction mechanism on non-noble metals such as Ni proceeds through N-O bond dissociation, generat-ing nitrosobenzene intermediates, while, on noble metals, such as Pd, H-attack is necessary to acti-vate the NO bond. Moreover, a bimetallic CuPd/SiO2 catalyst with a Pd enriched surface is prepared that exhibits an enhanced H2 dissociation ability and a particular reactivity at the boundary between the two metals.
Author supplied keywords
Cite
CITATION STYLE
Millán, R., Soriano, M. D., Moreno, C. C., Boronat, M., & Concepción, P. (2021). Combined spectroscopic and computational study of nitrobenzene activation on non-noble metals-based mono-and bimetallic catalysts. Nanomaterials, 11(8). https://doi.org/10.3390/nano11082037
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.