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首页> 外文期刊>Catalysis Today >A novel mechanism for spectator CO-mediated reaction with unique cis-(NO)2 dimer on a Co~(2+)-dimer/γ-Al2O3(110) model catalyst: Density functional theory calculations
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A novel mechanism for spectator CO-mediated reaction with unique cis-(NO)2 dimer on a Co~(2+)-dimer/γ-Al2O3(110) model catalyst: Density functional theory calculations

机译:Co〜(2 +)-二聚体/γ-Al2O3(110)模型催化剂上具有独特的顺式-(NO)2二聚体的观众CO介导反应的新机理:密度泛函理论计算

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摘要

Density functional theory calculations for NO adsorption and NO-CO reaction on a Co~(2+)-dimer/γ-Al2O3(110) model catalyst were conducted to understand two new aspects of the increases in the amount and reduction rate of adsorbed NO by gas phase CO molecules which are undetectable at the Co~(2+)-ensemble/γ-Al2O3 catalyst surface. Three kinds of dinitrosyl adsorbates were found and assigned to normal gem-dinitrosyl species (gem-dinitosyl I and II) and an unique cis-(NO)2 dimeric species. The gem-dinitrosyl II with a reconstructed structure involving Co-O_(surf) cleavage was considered as stable species experimentally observed, which is responsible for the spectator CO-promoted NO adsorption. We also found that the cis-(NO)2 dimeric species specific for the Co~(2+)-ensemble structure possesses a much higher reactivity than the gem-dinitrosyl species, enabling the facile reaction with CO that is very weakly trapped at the surface. In the Cis-(NO)2 dimeric species two adsorbed NO molecules on two adjacent Co~(2+) sites interact with each other due to the opposed orientation of the unoccupied d orbitals of the two Co~(2+), resulting in easy formation of a N-N bond through the 2π*-2π* hybridization. The NO adsorbates modify and activate the surface (Co~(2+) sites) to make pseudo-compounds (intermediates) with CO at the Co~(2+) sites in such a way that CO is not detected at the surface. The potential energy surface for the NO-CO reaction is presented and the transition states and intermediates are discussed.
机译:进行了Co〜(2 +)-二聚体/γ-Al2O3(110)模型催化剂上NO吸附和NO-CO反应的密度泛函理论计算,以了解NO吸附量增加和还原率的两个新方面气相的CO分子是在Co〜(2 +)-集成体/γ-Al2O3催化剂表面无法检测到的。发现了三种类型的二亚硝基吸附物,它们分别属于正常的宝石二亚硝酰基种类(gem-dinitosyl I和II)和独特的顺式(NO)2二聚体种类。实验中观察到,具有涉及Co-O_(surf)裂解的重构结构的宝石-二亚硝酰基II是稳定的物种,其负责观众CO促进的NO吸附。我们还发现,对Co〜(2+)团簇结构具有特异性的顺式(NO)2二聚体物种具有比宝石二亚硝酰基物种更高的反应性,从而使与CO的反应变得非常容易,而该CO的捕获非常弱。表面。在顺式(NO)2二聚体物种中,由于两个Co〜(2+)的未占据d轨道的相反方向,两个相邻的Co〜(2+)位置上的两个吸附的NO分子彼此相互作用。通过2π*-2π*杂交容易形成NN键。 NO吸附剂修饰并活化了表面(Co〜(2+)位),从而在CO〜(2+)位上与CO形成了假化合物(中间体),使得在表面未检测到CO。给出了NO-CO反应的势能面,并讨论了过渡态和中间体。

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