Luo Wenshu, Tian Han, Li Qin, Ma Junqing, Sun Wen, Zhu Libo, Wu Han, Kong Fantao, Zhuang Xiaodong, Cui Xiangzhi, Shi Jianlin
Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, P.R. China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, P.R. China.
Angew Chem Int Ed Engl. 2025 Aug 18;64(34):e202505059. doi: 10.1002/anie.202505059. Epub 2025 Jun 30.
Electrocatalytic upgrading of biomass-derived glycerol driven by renewable electricity offers a greatly attractive green way to produce value-added chemicals at much reduced global carbon footprint. However, achieving both the enhanced activity and selectivity for the most-valuable C3 product-glyceraldehyde (GAD) of glycerol oxidation reaction (GOR) in neutral media, though of great importance, is extremely challenging. In this work, we propose a CoO lattice activation mechanism by introducing single atom Ru (0.36 wt%) into the tetrahedral sites (Co) of CoO lattice to significantly elevate the GOR activity and the GAD selectivity. The as-constructed Ru-CoO/NF only needs 1.16 V to achieve the current density of 10 mA cm during GOR and maintains ∼60% GAD selectivity (∼90% for C3 products) over a broad potential window, which are the highest reported in near neutral media. This excellent performance has been demonstrated to originate from the introduction of Ru atoms, which activates the lattice active sites of CoO by promoting the rapid reconstruction of the catalyst to generate sufficient Co-(OH) electrophilic oxygen species, resulting in not only the accelerated GOR kinetics, also largely enhanced selectivity of GAD by the adsorption configuration regulation of glycerol primary alcohols (C-OH) favoring the primary alcohol oxidation pathway.
由可再生电力驱动的生物质衍生甘油的电催化升级提供了一种极具吸引力的绿色途径,能够以大幅降低全球碳足迹的方式生产增值化学品。然而,在中性介质中实现甘油氧化反应(GOR)中最有价值的C3产物甘油醛(GAD)的活性和选择性增强,尽管非常重要,但极具挑战性。在这项工作中,我们提出了一种CoO晶格活化机制,通过将单原子Ru(0.36 wt%)引入CoO晶格的四面体位点(Co),以显著提高GOR活性和GAD选择性。所构建的Ru-CoO/NF在GOR过程中仅需1.16 V即可达到10 mA cm的电流密度,并在较宽的电位窗口内保持约60%的GAD选择性(C3产物约为90%),这是近中性介质中报道的最高值。已证明这种优异性能源于Ru原子的引入,Ru原子通过促进催化剂的快速重构来活化CoO的晶格活性位点以产生足够的Co-(OH)亲电氧物种,不仅加快了GOR动力学,还通过调节甘油伯醇(C-OH)的吸附构型有利于伯醇氧化途径,从而大大提高了GAD的选择性。