催化作用
吸附
化学
催化循环
活化能
反应机理
物理化学
分子
Atom(片上系统)
密度泛函理论
结晶学
材料科学
无机化学
光化学
催化氧化
氧化还原
计算化学
有机化学
嵌入式系统
计算机科学
作者
Jin Xia Liang,Jian Lin,Xiao Feng Yang,Aiqin Wang,Botao Qiao,Jingyue Liu,Tao Zhang,Jun Li
摘要
Through periodic density functional theory (DFT) calculations we have investigated the catalytic mechanism of CO oxidation on an Ir1/FeOx single-atom catalyst (SAC). The rate-determining step in the catalytic cycle of CO oxidation is shown to be the formation of the second CO2 between the adsorbed CO on the surface of Ir1/FeOx and the dissociated O atom from gas phase. Comparing with Pt1/FeOx catalyst, the reaction activation barrier for CO oxidation is higher by 0.62 eV and the adsorption energy for CO molecule is larger by 0.69 eV on Ir1/FeOx. These results reveal that Ir1/FeOx catalyst has a lower activity for CO oxidation than Pt1/FeOx, which is consistent with our experimental results. The results can help to understand the fundamental mechanism of monodispersed surface atoms and to design highly active single-atom catalysts.
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