过电位
反铁磁性
催化作用
自旋极化
材料科学
化学物理
过渡金属
再分配(选举)
氢
化学
电子
纳米技术
凝聚态物理
物理化学
物理
量子力学
生物化学
有机化学
电极
政治
政治学
法学
电化学
作者
Hengjun Liu,Yong Jiang,Qingqing Li,Guangtong Hai,Chao Gu,Yaping Du
标识
DOI:10.1002/anie.202412591
摘要
Rare earth (RE) elements are attractive for spin‐magnetic modulation due to their unique 4f electron configuration and strong orbital couplings. Alloying RE with conventional 3d transition‐metal (TM) is promising for the fabrication of advanced spin catalysts yet remains much difficulties in preparation, which leads to the mysteries of spin‐magnetic effect between RE and 3d TM on catalysis. Here we define a solid‐phase synthetic protocol for creating RE‐3d TM‐noble metal integrated intraparticle heterostructured nanoalloys (IHAs) with distinct Gd and Co interface within the entire Rh framework, denoted as RhCo‐RhGd IHAs. They exhibit interface‐triggered antiferromagnetic interaction, which can induce electron redistribution and regulate spin polarization. Theoretical calculations further reveal that active sites around the heterointerface with weakened spin polarization optimize the adsorption and dissociation of H2O, thus promoting alkaline hydrogen evolution catalysis. The RhCo‐RhGd IHAs show a small overpotential of 11.3 mV at 10 mA cm‐2, as well as remarkable long‐term stability, far superior to previously reported Rh‐based catalysts.
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