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Influence of adsorbates on the electronic structure, bond strain, and thermal properties of an alumina-supported pt catalyst

机译:吸附物对氧化铝负载pt催化剂的电子结构,键应变和热性能的影响

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Figure Persented: We describe the results of an X-ray absorption spectroscopy (XAS) study of adsorbate and temperature-dependent alterations of the atomic level structure of a prototypical, noble metal hydrogenation and reforming catalyst: ~1.0 nm Pt clusters supported on gamma alumina (Pt/γ-Al _2O _3). This work demonstrates that the metal-metal (M-M) bonding in these small clusters is responsive to the presence of adsorbates, exhibiting pronounced coverage-dependent strains in the clusters' M-M bonding, with concomitant modifications of their electronic structures. Hydrogen and CO adsorbates demonstrate coverage-dependent bonding that leads to relaxation of the M-M bond strains within the clusters. These influences are partially compensated, and variably mediated, by the temperature-dependent electronic perturbations that arise from cluster-support and adsorbate-support interactions. Taken together, the data reveal a strikingly fluxional system with implications for understanding the energetics of catalysis. We estimate that a 9.1 ± 1.1 kJ/mol strain exists for these clusters under H _2 and that this strain increases to 12.8 ± 1.7 kJ/mol under CO. This change in the energy of the particle is in addition to the different heats of adsorption for each gas (64 ± 3 and 126 ± 2 kJ/mol for H _2 and CO, respectively).
机译:图的观点:我们描述了X射线吸收光谱(XAS)研究的结果,该样品是典型的贵金属加氢和重整催化剂的原子水平结构的被吸附物和温度依赖的变化:γ氧化铝上负载的〜1.0 nm Pt团簇(Pt /γ-Al_2O _3)。这项工作表明,在这些小簇中的金属-金属(M-M)结合对被吸附物的存在有响应,在簇的M-M结合中表现出明显的覆盖率依赖性应变,同时伴随着其电子结构的改变。氢和一氧化碳吸附物表现出与覆盖率有关的键合,导致簇内M-M键应变的松弛。这些影响部分地由簇-载体和吸附物-载体相互作用产生的依赖温度的电子扰动来部分补偿和可变地介导。两者合计,数据揭示了一个惊人的流动系统,对理解催化的能量学意义重大。我们估计,在H _2下,这些簇存在9.1±1.1 kJ / mol的应变,并且在CO下,该应变增加到12.8±1.7 kJ / mol。这种粒子能量的变化是吸附热不同的原因。对于每种气体(H _2和CO分别为64±3和126±2 kJ / mol)。

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