杂原子
过电位
金属有机骨架
催化作用
析氧
配体(生物化学)
对苯二甲酸
电化学
化学
无机化学
材料科学
光化学
化学工程
有机化学
电极
物理化学
吸附
戒指(化学)
生物化学
受体
工程类
聚酯纤维
作者
Hong-Yi Tan,Binghao Wang,Mengyi Xu,Zhiyong Peng,Wenjuan Wu,Sheng Shen,Shuang‐Feng Yin
标识
DOI:10.1002/cssc.202402112
摘要
Metal‐organic frameworks (MOFs) are promising catalysts for the electrochemical oxygen evolution reaction (OER) due to their high surface area, tunable pore structures, and abundant active sites. Ligand engineering is an important strategy to optimize their performance. Here, we report the synthesis of NiFe‐MOFs based on three different ligands: 1,4‐terephthalic acid (BDC), 2,4‐thiophene dicarboxylic acid (TDC), and 2,5‐furandicarboxylic acid (FDC), to investigate the effects of heteroatom‐based aromatic rings on OER performance. It is revealed that by incorporating electronegative sulfur and oxygen atoms into the ligands, the electron density at the metal sites is reduced, leading to enhanced metal‐oxygen covalency and improved charge transfer kinetics. The NiFe‐FDC/NF catalyst demonstrates an overpotential of 189 mV at 10 mA·cm‐2 and stable performance over 1300 hours at 1 A·cm‐2. In situ infrared spectroscopy reveal minimal structural reconstruction in NiFe‐FDC/NF, contributing to its superior stability. The NiFe‐FDC/NF were then subjected to 3600 hours of OER operation and it’s metal elution was monitored. These findings offer a novel approach to ligand design for high‐performance MOF‐based OER catalysts, highlighting the potential of furan‐based ligands for MOF ligand engineering.
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