CIESC Journal ›› 2025, Vol. 76 ›› Issue (12): 6376-6386.DOI: 10.11949/0438-1157.20250288

• Catalysis, kinetics and reactors • Previous Articles     Next Articles

Ag-Sn interfacial electronic structure modulation for high-efficiency CO2 electroreduction at 1 A/cm2 under acidic conditions

Zhizhong PENG(), Xuelei LANG, Qiang FANG, Huifang JING, dazhong ZHONG(), Jinping LI, Qiang ZHAO()   

  1. Shanxi Key Laboratory of Gas Energy Efficient and Clean Utilization, College of Chemistry and Chemical Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China
  • Received:2025-03-24 Revised:2025-04-25 Online:2026-01-23 Published:2025-12-31
  • Contact: dazhong ZHONG, Qiang ZHAO

Ag-Sn间电子结构调控在酸性环境中实现1 A/cm2下高效CO2还原

彭郅众(), 郎学磊, 房强, 井慧芳, 钟达忠(), 李晋平, 赵强()   

  1. 太原理工大学化学与化工学院,气体能源高效清洁利用山西省重点实验室,山西 太原 030024
  • 通讯作者: 钟达忠,赵强
  • 作者简介:彭郅众(1998—),男,硕士研究生,pengzhizhong1054@link.tyut.edu.cn
  • 基金资助:
    国家自然科学基金项目(22308246);国家自然科学基金项目(22478278);中央政府引导地方科技发展基金(YDZJSX20231A015);山西省基础研究计划(202203021212266)

Abstract:

Electrocatalytic CO2 reduction under acidic conditions has attracted significant attention due to its ability to enhance CO2 utilization and suppress carbonate formation. However, the elevated H+ concentration in acidic environments intensifies the competing hydrogen evolution reaction (HER), thereby imposing higher requirements on catalyst stability and selectivity. Herein, we report an Ag-Sn bimetallic catalyst that exhibits outstanding CO2RR performance in an acidic membrane electrode assembly (MEA) at pH=2. Under a current density of 400 mA/cm2, the catalyst achieves a CO selectivity of up to 99.4%, and even at 1 A/cm2, the CO Faraday efficiency (FECO) remains at 83.5%, with a maximum CO partial current density reaching 834.8 mA/cm2. The study found that the introduction of a small amount of Sn can adjust the electronic structure of Ag, thereby accelerating the activation of CO2 and the transformation to *COOH intermediates. This work provides a new strategy for developing highly efficient and stable CO2RR catalysts suitable for operation under acidic conditions.

Key words: acid, electrocatalytic carbon dioxide reduction, MEA, Faraday efficiency, CO partial current density, electronic structure, activation, intermediate

摘要:

酸性条件下的电催化二氧化碳还原(CO2RR)因其能够提高CO2利用率并抑制碳酸盐形成而备受关注。然而,酸性环境由于H+浓度升高导致竞争性析氢反应(HER)加剧,从而对催化剂的稳定性和选择性提出了更高的要求。在此,报道了一种Ag-Sn双金属催化剂,在pH=2的酸性膜电极中表现出了优异的CO2RR性能。该催化剂在400 mA/cm2的电流密度下CO选择性高达99.4%,且在1 A/cm2的条件下,CO的法拉第效率(FECO)仍能维持在83.5%,CO的分电流密度最高达到了834.8 mA/cm2。研究发现,少量Sn的引入能够调节Ag的电子结构,从而加速CO2活化以及向*COOH中间体的转变。这项工作为开发适用于酸性条件的高效稳定CO2RR催化剂提供了新的思路。

关键词: 酸性, 电催化CO2还原, MEA, 法拉第效率, CO分电流密度, 电子结构, 活化, 中间体

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