欠电位沉积
电合成
过渡金属
催化作用
材料科学
碳纤维
纳米技术
电催化剂
无机化学
电化学
组合化学
物理化学
循环伏安法
有机化学
化学
电极
复合材料
复合数
作者
Aidan Francis Meese,Cade Napier,Jae‐Hong Kim,Kali Rigby,Tayler Hedtke,Denis Leshchev,Eli Stavitski,Lucas R. Parent,Jae‐Hong Kim
标识
DOI:10.1002/adma.202311341
摘要
Abstract Use of single‐atom catalysts (SACs) has become a popular strategy for tuning activity and selectivity toward specific pathways. However, conventional SAC synthesis methods require high temperatures and pressures, complicated procedures, and expensive equipment. Recently, underpotential deposition (UPD) has been investigated as a promising alternative, yielding high‐loading SAC electrodes under ambient conditions and within minutes. Yet only few studies have employed UPD to synthesize SACs, and all have been limited to UPD of Cu. In this work, a flexible UPD approach for synthesis of mono‐ and bi‐metallic Cu, Fe, Co, and Ni SACs directly on oxidized, commercially available carbon electrodes is reported. The UPD mechanism is investigated using in situ X‐ray absorption spectroscopy and, finally, the catalytic performance of a UPD‐synthesized Co SAC is assessed for electrochemical nitrate reduction to ammonia. The findings expand upon the usefulness and versatility of UPD for SAC synthesis, with hopes of enabling future research toward realization of fast, reliable, and fully electrified SAC synthesis processes.
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