Surface palladium nanoparticles in ionic liquids modified with phosphorus ligands for enhanced catalytic semi-hydrogenation
Abstract
Thermodynamic stability of nanoparticles necessitates the use of stabilizing agents to provide steric and electronic protection. However, their activity and selectivity remain suboptimal under moderate reaction conditions. In this study, we present high-performance Pd nanoparticles featuring a distinctive Pd-phosphine surface, akin to a quasi nano-frustrated Lewis pair architecture. In this system, electron donation from ionophilic phosphine species enhances the electron density of the Pd nanoparticles, contributing to their improved performance. Solid-state NMR and XPS analyses disclose the strong coordination of phosphine species on the Pd NPs. DFT calculations reveal the geometry and conformations of the coordinated phosphine, showing that one of the phenyl rings aligns nearly parallel to the nanoparticle facets. This interaction occurs through the six carbon atoms of the ? system. We investigate the structure-activity relationships (SARs) exhibited by these NPs in the efficient semi-hydrogenation of phenylacetylene (TOF = 3.85 s?1), 2-cyclohexen-1-one (TOF = 0.8 s?1), and 1,3-cyclohexadiene (TOF = 12.82 s?1) at 40 °C and 2-4 bar of H
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| Título según WOS: | Surface palladium nanoparticles in ionic liquids modified with phosphorus ligands for enhanced catalytic semi-hydrogenation |
| Título según SCOPUS: | Surface palladium nanoparticles in ionic liquids modified with phosphorus ligands for enhanced catalytic semi-hydrogenation |
| Título de la Revista: | Nanoscale |
| Volumen: | 17 |
| Número: | 28 |
| Editorial: | Royal Society of Chemistry |
| Fecha de publicación: | 2025 |
| Página de inicio: | 16705 |
| Página final: | 16712 |
| Idioma: | English |
| DOI: |
10.1039/d5nr00789e |
| Notas: | ISI, SCOPUS |