双金属片
格式化
还原(数学)
无机化学
化学
电催化剂
催化作用
材料科学
氧还原反应
氧还原
化学工程
甲醇
燃料电池
阳极
电极
核化学
电化学
甲烷
化学还原
工作(物理)
氢
作者
Leibing Chen,Yali Wang,Jing Mei,Guoying Li,Han Song Yao,Jiaxing Lu,Huan Wang
标识
DOI:10.1016/j.ijhydene.2026.154803
摘要
To address the issue of excessive atmospheric CO 2 levels, electrochemical CO 2 reduction reaction (eCO 2 RR) to fuels and chemicals has been extensively studied. Herein, we report a metal-organic framework-derived spherical catalyst Bi3Sn1Ox, consisting of stacked nanosheets, by combining hydrothermal and pyrolysis methods. Bi3Sn1Ox demonstrates outstanding performance in eCO 2 RR for HCOO − production, achieving over 94% FE HCOO− in H-cells across a potential range of −0.9 V to −1.4 V. It also exhibits considerable current density in flow cells, reaching up to 800 mA/cm 2 with a FE HCOO− of 96.1%. Characterization tests demonstrate that Bi3Sn1Ox's unique porous structure confer superior CO 2 adsorption capacity. Furthermore, the electron transfer between Bi and Sn in Bi3Sn1Ox creates a positive charge center at Sn sites, which inhibits nucleophilic reactions on CO 2 , favors the generation of the *OCHO intermediate and promotes HCOO − formation.
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