首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Theoretical Study of the Adsorption of Formaldehyde on Magnesium Oxide Nanosurfaces:Size Effects and the Role of Low-Coordinated and Defect Sites
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Theoretical Study of the Adsorption of Formaldehyde on Magnesium Oxide Nanosurfaces:Size Effects and the Role of Low-Coordinated and Defect Sites

机译:氧化镁纳米表面上甲醛吸附的理论研究:尺寸效应以及低配位和缺陷位点的作用

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摘要

The electronic and geometrical structures of nanoclusters of MgO have been investigated by density functional calculations.The dependence of the properties on size is studied.Defect formation energies are also calculated for various ionic and atomic vacancies.A study of the adsorption of formaldehyde at various sites has shown that the lower coordination sites are preferred so much that,in cases where the nanocluster can adapt itself to expose more of the lower coordination sites,it readily does so.A strong four-membered ring involving the carbonyl group and surface MgO units is formed.This results in a weakening of the carbonyl bond to almost a single bond.The adsorbed species is formate-like in structure,the second CO bond being formed with a surface oxide.The surface Mg-O bonds in the four-center complex are also considerably weakened.The adsorption process is highly exothermic.An investigation of adsorption of formaldehyde at defect sites has revealed that many interesting adsorption products are formed depending on the nature of the vacancy.Adsorption at these positions releases more energy than at perfect MgO surfaces.
机译:通过密度泛函计算研究了MgO纳米团簇的电子和几何结构,研究了性质对尺寸的依赖性,还计算了各种离子和原子空位的缺陷形成能,研究了甲醛在不同位置的吸附研究表明,较低的配位点是如此之好,以至于在纳米团簇能够适应暴露更多的较低的配位点的情况下,它很容易做到这一点。一个强的四元环,涉及羰基和表面MgO单元这导致羰基键几乎减弱为一个单键。被吸附的物质在结构上呈甲酸盐状,第二个CO键与表面氧化物形成。四中心配合物中的表面Mg-O键甲醛的吸附过程高度放热。对甲醛在缺陷部位的吸附研究表明,许多有趣的吸附剂产品的形成取决于空位的性质。在这些位置的吸附比在理想的MgO表面释放的能量更多。

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