Selective Chemo‐Divergent Hydrogenation of Ethylene Carbonate Enabled by Multi‐Functional Poly(Ionic Liquids)‐Stabilized Ru Nanoparticles
Abstract
Abstract Cyclic carbonates, in particular ethylene carbonate (EC), are pivotal compounds across chemical sciences because of their unique properties. Although, their transformation into valuable products has attracted great attention, efficient and selective transformations remain challenging. In this work, we report a catalytic system composed of Ru nanoparticles (RuNPs) stabilized by poly(ionic liquids) (Ru@PIL), that enables the selective chemo‐divergent hydrogenation of EC into either EtOH and CO 2 or EG and CH 4 , under solvent‐free conditions. Those transformations relied on the multi‐task ability of poly(ionic liquids) (PILs), which provides efficient electro‐steric protection of the NPs, good solubility in neat carbonates, and organocatalytic activity depending on the nature of the PIL counter‐anions. Hence, PIL incorporating nucleophilic anions, such as I − , triggers the cascade transformation of EC into EtOH via a sequential decarboxylation‐hydrogenation process. Conversely, in the presence of non‐nucleophilic anions, the PIL is catalytically a spectator, yielding to the “direct hydrogenation” of EC by the RuNPs.
Article Details
Authors (3)
Wenjuan Wang
School of Life Sciences, Technology Center for Protein Sciences, Tsinghua University
Thierry Tassaing
University of Bordeaux, CNRS, Bordeaux INP, ISM UMR 5255 351 Cours de la Libération Bordeaux Talence Cedex 33405 France
Joan Vignolle
University of Bordeaux, CNRS, Bordeaux INP, Laboratoire de Chimie des Polymères Organiques (LCPO), UMR 5629 16 Av. Pey Berland Pessac cedex 33607 France