硫化
催化作用
化学
电子转移
反应速率常数
活动站点
比表面积
无机化学
材料科学
光化学
动力学
有机化学
物理
量子力学
作者
Dunyu Sun,Leliang Wu,Qiang Zhong,Kwangchol Ri,Syed Azhar Abbas,Shaogui Yang,Chenmin Xu,Shanshan Ding,Yazi Liu,Zhe Xu,Chengdu Qi,Huan He,Shiyin Li,Cheng Sun
标识
DOI:10.1016/j.apcatb.2024.124076
摘要
The performance of Fe-based heterogeneous Fenton catalysts is apparently affected by the electron density of Fe active site. Herein, we modulate the active site electronic density of the Fe3C-based catalyst by surface sulfidation to improve H2O2 activation property. After sulfidation, the removal of acetaminophen (APAP) increased from 27.1% to 100%, and the degradation rate constant kobs of APAP increased 5.44-fold. Sulfidation enhances the utilization of H2O2 and improves the generation of active species. Theoretical calculations demonstrated that sulfidation increases the electron density of Fe sites and lowers the band gap between the d-band center and Fermi energy level, facilitating electron transfer and H2O2 activation. The change in cleavage position of H2O2 from O-H to O-O after sulfidation provides additional evidence for the increased generation of •OH. These results elucidate the promoting effect of sulfidation on heterogeneous Fenton catalysts and provide a strategy for improving the performance of catalyst and contaminant removal.
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