Tailoring the d‐Orbital Splitting Manner of Single Atomic Sites for Enhanced Oxygen Reduction
作者:Yunkun Dai, Bo Liu, Ziyu Zhang, Pan Guo, Chang Liu, Yunlong Zhang, Lei Zhao, Zhen‐Bo Wang · 发表于:Advanced Materials · 年份:2023 · DOI:10.1002/adma.202210757 · 被引用次数:315 · 研究领域:Electrocatalysts for Energy Conversion、Fuel Cells and Related Materials、Advanced Photocatalysis Techniques
Abstract Regulating the electronic states of single atomic sites around the Fermi level remains a major concern for boosting the electrocatalytic oxygen reduction reaction (ORR). Herein, a Fe d‐orbital splitting manner modulation strategy by constructing axial coordination on FeN 4 sites is presented. Experimental investigations and theoretical calculations reveal that the axial tractions induce the distortion of square‐planar field (FeN 4 SP ), up to the quasi‐octahedral coordination (FeN 4 O 1 OC quasi ), thus leading to the electron rearrangement with a diluted spin polarization. The declined population of unpaired electrons in d z 2 , d x z and d yz states engenders a moderate adsorption of ORR intermediates, thereby reinforcing the intrinsic reaction activity. In situ infrared spectroscopy further demonstrates that the reordering of d‐orbital splitting and occupation facilitates the desorption of *OH. The FeN 4 O 1 OC quasi exhibits a dramatic improvement of kinetic current density and turnover frequency, which are fivefold and tenfold higher than those of FeN 4 SP . This work presents a novel understanding on improving the electrocatalytic performance through the orbital‐scale manipulation.