Electrocatalytic reduction of CO(2) (CO(2)RR) to multi-electron (> 2e(-)) products provides a green and sustainable route for producing fuels and chemicals. Introducing the second metal element is a feasible strategy for "managing" the key intermediate on Cu-based materials to further improve the CO(2)RR catalytic performance. In this work, palladium, which promises the generation of CO, was introduced into the poly(ionic liquid)-based copper hybrid (Cu@PIL) to construct a novel Cu-Pd bimetallic electrocatalyst (Cu@PIL@Pd). Remarkably, with a small dosage of palladium (2.0Â mol% compared with Cu), a high faradaic efficiency (FE) for C(2+) products (68.7%) was achieved at -1.01Â V (with respect to the reversible hydrogen electrode (RHE), the same below) with a high partial current density of 178.3Â mA cm(-2). Meanwhile, high selectivity towards CH(4) (FEÂ =Â 42.5%) and corresponding partial current density of 172.8Â mA cm(-2) were obtained on the same catalyst at -1.24Â V, signifying a significant potential-dependent selectivity. Mechanistic studies reveal that both copper and palladium oxides are reduced to metallic states during the CO(2)RR. The presence of the adjoint copper phase and the highly dispersed electrostatic layer promote the generation of CO on the palladium components (both the PdO(2) phase and the Pd(II) site). Besides, the local CO* was enriched by the significant diffusion resistance of CO in the PIL layer. The spillover of CO* from Pd sites to the adjoint Cu sites, accompanied by the increased local concentration of CO* around Cu sites, accounted for the observed good CO(2)RR catalytic performance, especially the high C(2+) product selectivity.
Electroreduction of carbon dioxide to multi-electron reduction products using poly(ionic liquid)-based Cu-Pd catalyst.
利用聚离子液体基Cu-Pd催化剂将二氧化碳电还原为多电子还原产物
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作者:Li Xiao-Qiang, Duan Guo-Yi, Yang Xian-Xia, Han Li-Jun, Xu Bao-Hua
| 期刊: | Fundamental Research | 影响因子: | 6.300 |
| 时间: | 2022 | 起止号: | 2022 Jan 1; 2(6):937-945 |
| doi: | 10.1016/j.fmre.2021.12.009 | ||
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