催化作用
选择性催化还原
还原(数学)
化学
反应机理
选择性还原
机制(生物学)
组合化学
有机化学
物理
几何学
量子力学
数学
作者
Meng Gao,Gao Qing Lu,Zhuocan Li,Xin Wang,Rucheng Duan,Yu Fu,Guangzhi He,Hong He
标识
DOI:10.1021/acs.est.5c06059
摘要
Mn-based oxide catalysts have promising potential in the selective catalytic reduction of NO with NH3 (NH3-SCR) due to their excellent low-temperature activity. However, poor N2 selectivity severely restricts their large-scale practical applications. In this study, we achieved an improvement in both activity and selectivity of Mn-based SCR catalysts by W modification and revealed the mechanism by which the formation of Mn-W dinuclear active sites enhances their performance. By combining experimental measurements and density functional theory (DFT) calculations, the improved NH3-SCR performance of the MnW/TiO2 catalyst was attributed to the significant redox role of W, resulting from the formation of strongly interacting Mn-W dinuclear sites. The entire NH3-SCR reaction pathway over the Mn-W dinuclear site was elucidated at the atomic level, confirming that the W sites played a redox role in the reaction, specifically by directly participating in the oxidative activation of NH3. This work elucidates the working principle of dinuclear active sites in the NH3-SCR reaction and provides valuable insight for the development of future generation high-performance SCR catalysts.
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