尖晶石
电合成
钴
电催化剂
法拉第效率
无机化学
化学
氧化物
电化学
产量(工程)
催化作用
材料科学
化学工程
过渡金属
碳纤维
基质(水族馆)
八面体
共沉淀
电极
氢氧化物
金属
降级(电信)
作者
Chuqian Xiao,Dongqi Liu,Hu S,Xiuming Bu,Shaoyan Wang,Yuhang Li,Xianying Wang
摘要
ABSTRACT The electrosynthesis of 2,5‐furandicarboxylic acid (FDCA) from 5‐hydroxymethylfurfural (HMF) in near‐neutral media offers a sustainable alternative to alkaline routes by suppressing HMF degradation and thus mitigating carbon loss. However, it remains challenging to achieve both enhanced activity and long‐term durability for the deep oxidation of HMF intermediates into FDCA in a neutral medium. Herein, we report a Ru/Ni─co‐modified spinel cobalt oxide catalyst, Ru─CoNiOx, prepared through a scalable strategy. Structural analyses reveal that atomically dispersed Ru species preferentially incorporated into distorted octahedral Co coordination environment, while Ni species are mainly stabilized at tetrahedral Co sites, forming asymmetric [Ru oct ─O 6 ] and [Ni tet ─O 4 ] coordination motifs within the Co 3 O 4 lattice. This tailored coordination environment promotes surface hydroxylation and the transformation of Co(Ni)─OH ads /Co(Ni)─OOH, while strengthening the interfacial interaction with HMF. In near‐neutral KHCO 3 electrolyte, Ru─CoNiOx achieves approximately 91.0% FDCA Faradaic efficiency and 88.2% FDCA yield at 60°C, while showing a high carbon balance of 99.4%. Furthermore, a continuously HMFOR || HER membrane electrode assembly sustains FDCA production at 200 mA cm −2 for over 1700 h at approximately 1.9 V. This work demonstrates an effective strategy for asymmetric coordination regulation in spinel oxides and highlights the promise of near‐neutral electrocatalysis for coupled FDCA and H 2 production.
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