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Updated: May 16, 2026

Hydrogen Production and Utilization in a Membrane Reactor
Published on: March 10, 2023
Room temperature ionic liquid as solvent for in situ Pd/H formation: hydrogenation of carbon-carbon double bonds
Benjamin C M Martindale1, Dzianis Menshykau, Sven Ernst
1Department of Chemistry, Physical and Theoretical Chemistry Laboratory, Oxford University, UK.
Abstract:
This work undertakes mechanistic studies of H(+) reduction on a palladium microelectrode in a room temperature ionic liquid. It was found that the electrode was initially in a partially passivated state in [NTf(2)](-) based RTILs and that pre-anodisation of the electrode surface has a dramatic effect on the reversibility of the system, also triggering a change from hydrogen evolution to hydrogen absorption. Theoretical modelling supported the idea of Pd/H formation under these conditions. Utilising Pd/H as an activated hydrogen source, a proof-of-concept method for hydrogenation of multiple bond containing organic molecules by in situ generation of Pd/H via reduction of H(+) on palladium in a room temperature ionic liquid has been demonstrated.
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