钴
催化作用
甲酸
材料科学
乙二醇
过电位
无机化学
氧化钴
化学工程
水滑石
磷酸
偏磷酸盐
电化学
纳米材料
吸附
氧化物
热解
纳米晶材料
合成气
纳米颗粒
化学
深共晶溶剂
聚乙二醇
气凝胶
共晶体系
乙烯
作者
Xinhui Zhao,Rujin Zhou,Fei Xue,Xinghai Xu,Jing Feng,Han Zhang,Mingyan Wang,Jingyun Jiang
出处
期刊:Chemsuschem
[Wiley]
日期:2025-11-17
卷期号:: e202502167-e202502167
标识
DOI:10.1002/cssc.202502167
摘要
Spent lithium cobalt oxide (LCO) from retired lithium‐ion batteries represents a valuable secondary source of cobalt. Developing efficient catalysts directly from such waste offers an appealing route to simultaneously tackle resource recovery and energy conversion challenges. Herein, a phytic acid‐based deep eutectic solvent was applied to selectively extract cobalt from spent LCO, followed by one‐step pyrolysis to obtain cobalt metaphosphate (CoPO/C) electrocatalysts. The resulting CoPO/C exhibits remarkable catalytic activity and stability for the electrochemical oxidation of ethylene glycol, enabling its efficient conversion into formic acid under mild conditions. Notably, the superior performance of CoPO/C originates from its strong adsorption capability toward both ethylene glycol and hydroxyl intermediates, which promotes reaction kinetics. This work highlights a sustainable “waste‐to‐catalyst” strategy that achieves simultaneous resource utilization and green energy production.
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