Efficient carbon dioxide hydrogenation to formic acid with buffering ionic liquids.

Weilhard, Andreas; Argent, Stephen P; Sans, Victor · Nat Commun · 2021

basic_science · Level V

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Abstract

The efficient transformation of CO<sub>2</sub> into chemicals and fuels is a key challenge for the decarbonisation of the synthetic production chain. Formic acid (FA) represents the first product of CO<sub>2</sub> hydrogenation and can be a precursor of higher added value products or employed as a hydrogen storage vector. Bases are typically required to overcome thermodynamic barriers in the synthesis of FA, generating waste and requiring post-processing of the formate salts. The employment of buffers can overcome these limitations, but their catalytic performance has so far been modest. Here, we present a methodology utilising IL as buffers to catalytically transform CO<sub>2</sub> into FA with very high efficiency and comparable performance to the base-assisted systems. The combination of multifunctional basic ionic liquids and catalyst design enables the synthesis of FA with very high catalytic efficiency in TONs of >8*10<sup>5</sup> and TOFs > 2.1*10<sup>4</sup> h<sup>-1</sup>.