Tunable CO<sub>2</sub> electroreduction to ethanol and ethylene with controllable interfacial wettability.

Lin, Yan; Wang, Tuo; Zhang, Lili; Zhang, Gong; Li, Lulu; Chang, Qingfeng; Pang, Zifan; Gao, Hui et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

The mechanism of how interfacial wettability impacts the CO<sub>2</sub> electroreduction pathways to ethylene and ethanol remains unclear. This paper describes the design and realization of controllable equilibrium of kinetic-controlled *CO and *H via modifying alkanethiols with different alkyl chain lengths to reveal its contribution to ethylene and ethanol pathways. Characterization and simulation reveal that the mass transport of CO<sub>2</sub> and H<sub>2</sub>O is related with interfacial wettability, which may result in the variation of kinetic-controlled *CO and *H ratio, which affects ethylene and ethanol pathways. Through modulating the hydrophilic interface to superhydrophobic interface, the reaction limitation shifts from insufficient supply of kinetic-controlled *CO to that of *H. The ethanol to ethylene ratio can be continuously tailored in a wide range from 0.9 to 1.92, with remarkable Faradaic efficiencies toward ethanol and multi-carbon (C<sub>2+</sub>) products up to 53.7% and 86.1%, respectively. A C<sub>2+</sub> Faradaic efficiency of 80.3% can be achieved with a high C<sub>2+</sub> partial current density of 321 mA cm<sup>-2</sup>, which is among the highest selectivity at such current densities.

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