首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Interaction of Isophorone with Pd(111): A Combination of Infrared Reflection-Absorption Spectroscopy, Near-Edge X-ray Absorption Fine Structure, and Density Functional Theory Studies
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Interaction of Isophorone with Pd(111): A Combination of Infrared Reflection-Absorption Spectroscopy, Near-Edge X-ray Absorption Fine Structure, and Density Functional Theory Studies

机译:异佛尔酮与Pd(111)的相互作用:红外反射吸收光谱法,近边缘X射线吸收精细结构和密度泛函理论研究的组合

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Atomistic level understanding of interaction of alpha,beta-unsaturated carbonyls with late transition metals is a key prerequisite for rational design of new catalytic materials with the desired selectivity toward C-C or C-O bond hydrogenation. The interaction of this class of compounds with transition metals was investigated on alpha,beta-unsaturated ketone isophorone on Pd(111) as a prototypical system. In this study, infrared reflectionabsorption spectroscopy (IRAS), near-edge X-ray absorption fine structure (NEXAFS) experiments, and density functional theory calculations including van der Waals interactions (DFT+vdW) were combined to obtain detailed information on the binding of isophorone to palladium at different coverages and on the effect of preadsorbed hydrogen on the binding and adsorption geometry. According to these experimental observations and the results of theoretical calculations, isophorone adsorbs on Pd(111) in a flat-lying geometry at low coverages. With increasing coverage, both C-C and C-O bonds of isophorone tilt with respect to the surface plane. The tilting is considerably more pronounced for the C-C bond on the pristine Pd(111) surface, indicating a prominent perturbation and structural distortion of the conjugated p system upon interaction with Pd. Preadsorbed hydrogen leads to higher tilting angles of both p bonds, which points to much weaker interaction of isophorone with hydrogen-precovered Pd and suggests the conservation of the in-plane geometry of the conjugated pi system. The results of the DFT+vdW calculations provide further insights into the perturbation of the molecular structure of isophorone on Pd(111).
机译:对α,β-不饱和羰基与晚期过渡金属相互作用的原子级理解是合理设计新型催化材料的关键前提,该材料具有对C-C或C-O键加氢的所需选择性。在原型(Pd(111))上的α,β-不饱和酮异佛尔酮上研究了这类化合物与过渡金属的相互作用。在这项研究中,红外反射吸收光谱法(IRAS),近边缘X射线吸收精细结构(NEXAFS)实验以及包括范德华相互作用(DFT + vdW)的密度泛函理论计算相结合,以获得有关结合的详细信息。异佛尔酮与钯在不同的覆盖率下以及预吸附氢对结合和吸附几何形状的影响。根据这些实验观察和理论计算的结果,异佛尔酮以低覆盖度的平坦几何形状吸附在Pd(111)上。随着覆盖率的增加,异佛尔酮的C-C和C-O键均相对于表面倾斜。原始Pd(111)表面上的C-C键倾斜更为明显,表明与Pd相互作用时共轭p系统的明显扰动和结构变形。预先吸附的氢导致两个p键的倾斜角更高,这表明异佛尔酮与氢预埋的Pd的相互作用要弱得多,这表明共轭pi系统的面内几何结构保持不变。 DFT + vdW计算的结果可进一步了解Pd(111)上异佛尔酮的分子结构的扰动。

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