电催化剂
材料科学
电荷(物理)
自旋(空气动力学)
电子转移
电子
能量(信号处理)
工程物理
凝聚态物理
化学物理
纳米技术
电极
光化学
电化学
物理
量子力学
化学
热力学
作者
Shubin Sun,Yudi Zhang,Shi Xin,Wen Sun,Claudia Felser,Wei Li,Guowei Li
标识
DOI:10.1002/adma.202312524
摘要
Abstract Catalytic materials play crucial roles in various energy‐related processes, ranging from large‐scale chemical production to advancements in renewable energy technologies. Despite a century of dedicated research, major enduring challenges associated with enhancing catalyst efficiency and durability, particularly in green energy‐related electrochemical reactions, remain. Focusing only on either the crystal structure or electronic structure of a catalyst is deemed insufficient to break the linear scaling relationship (LSR), which is the golden rule for the design of advanced catalysts. The discourse in this review intricately outlines the essence of heterogeneous catalysis reactions by highlighting the vital roles played by electron properties. The physical and electrochemical properties of electron charge and spin that govern catalysis efficiencies are analyzed. Emphasis is placed on the pronounced influence of external fields in perturbing the LSR, underscoring the vital role that electron spin plays in advancing high‐performance catalyst design. The review culminates by proffering insights into the potential applications of spin catalysis, concluding with a discussion of extant challenges and inherent limitations.
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