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Switching CO 2 Electroreduction Selectivity on Silver Nanoparticles from CO to Formate by Polyamidoamine Encapsulation

作者:Ximeng Lv, Li Yang, Zhengzheng Liu, Hairui Ma, Naixin Lyu, Shuyi Kong, Zhuoran Lv, Cejun Hu, Gengfeng Zheng · 发表于:Small · 年份:2025 · DOI:10.1002/smll.202509724 · 被引用次数:3 · 研究领域:CO2 Reduction Techniques and Catalysts、Ammonia Synthesis and Nitrogen Reduction、Carbon dioxide utilization in catalysis

Abstract Silver (Ag) nanomaterials are known as attractive catalyst candidates in electrochemical CO 2 reduction reaction (CO 2 RR), while achieving high selectivities beyond carbon monoxide (CO) remains a great challenge. In this work, it is demonstrated that NH 2 ‐terminated polyamidoamine (PAMAM) dendrimer can be functionalized on Ag surface to construct an interfacial hydrogen‐bond rich network, enabling to acceleration water transport and promoting water dissociation. Such a hydrogen‐bond‐rich interface can stabilize the key intermediates ( * HCOO, * OCHO * , etc.) and trigger unique formate selectivity. As a result, the PAMAM‐encapsulated Ag nanoparticles allow for switching the electrocatalytic CO 2 RR selectivity from CO to formate, with a Faradaic efficiency of ≈51% (corresponding to a selectivity of 85% among carbon‐based products) at −1.55 V versus reversible hydrogen electrode, significantly different from the unfunctionalized Ag nanoparticles that can only result in the CO product. The findings suggest a new perspective into the CO 2 RR mechanism, and supplement a promising strategy for tuning product distributions.