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Amorphous Fe–O–P electro(pre)catalysts for energy-efficient H2 production coupled with ethylene glycol oxidation
Chemical Communications ( IF 4.3 ) Pub Date : 2024-11-13 , DOI: 10.1039/d4cc05422a Feifei Yuan, Xiaoli Chen, Wenhui Yang, Wanting Wu, Manjie Zheng, Jun Xu, Nan Yu, Liyong Chen
Chemical Communications ( IF 4.3 ) Pub Date : 2024-11-13 , DOI: 10.1039/d4cc05422a Feifei Yuan, Xiaoli Chen, Wenhui Yang, Wanting Wu, Manjie Zheng, Jun Xu, Nan Yu, Liyong Chen
This study presents the synthesis and electrocatalytic performance of amorphous Fe–O–P nanocages derived from Fe-MOFs for water and ethylene glycol (EG) oxidation. Despite structural and compositional changes, the electrocatalyst in an electrolytic cell with Pt/C shows high activity and reduced cell voltage, efficiently generating H2 and formic acid in a KOH–EG mixed electrolyte.
中文翻译:
无定形 Fe-O-P 电(预)催化剂,用于与乙二醇氧化耦合的节能 H2 生产
本研究介绍了由 Fe-MOF 衍生的非晶态 Fe-O-P 纳米笼的合成和电催化性能,用于水和乙二醇 (EG) 氧化。尽管结构和成分发生了变化,但具有 Pt/C 的电解槽中的电催化剂显示出高活性和降低的电池电压,在 KOH-EG 混合电解质中有效地生成 H2 和甲酸。
更新日期:2024-11-13
中文翻译:
无定形 Fe-O-P 电(预)催化剂,用于与乙二醇氧化耦合的节能 H2 生产
本研究介绍了由 Fe-MOF 衍生的非晶态 Fe-O-P 纳米笼的合成和电催化性能,用于水和乙二醇 (EG) 氧化。尽管结构和成分发生了变化,但具有 Pt/C 的电解槽中的电催化剂显示出高活性和降低的电池电压,在 KOH-EG 混合电解质中有效地生成 H2 和甲酸。