脱氢
催化作用
吸附
材料科学
金属
氧气
过渡金属
动力学
化学
活动站点
丙烯
化学工程
氢
物理化学
活动中心
化学物理
多相催化
化学动力学
分子动力学
活化能
反应机理
光化学
表征(材料科学)
反应中间体
热力学
氧化还原
化学反应
分子氧
金属有机骨架
密度泛函理论
计算化学
无机化学
作者
Zihao Li,Xiong Jing Chen,Yao Lv,Sheng Dai,Huazhen Chang,Zhenguo Li,Kailong Ye,Fudong Liu,Lei Ma,Naiqiang Yan
标识
DOI:10.1038/s41467-025-64243-y
摘要
Pt/CeO2 ensemble catalysts are promising for propylene (C3H6) oxidation in vehicle exhaust, yet identifying the intrinsic active sites and understanding how the metal-support interface evolves at varying reaction temperatures remains contentious. Herein, we demonstrate that H2-activated Pt/CeO2 ensemble catalysts feature metallic Pt ensembles as intrinsic active sites, lowering the 50% conversion temperature by 120 °C after hydrogen activation. Various operando characterization techniques reveal an approximately 170 °C threshold temperature for the dynamic change of the reaction models. Meanwhile, kinetics and theoretical analysis illustrates that oxygen-facilitated dehydrogenation of sp3 C-H bonds is the rate-determining step. At low temperatures, both C3H6 and O2 adsorb and activate on metallic Pt, without CeO2 involvement. Once the temperature exceeds threshold, C3H6 fully covers Pt sites, while O2 activates over Pt-O-Ce interfaces and participates in dehydrogenation. This study highlights the dynamic nature of oxygen activation, leading to distinct reaction temperature regimes during C3H6 oxidation.
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