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Intermetallic Compounds as an Alternative to Single-atom Alloy Catalysts: Geometric and Electronic Structures from Advanced X-ray Spectroscopies and Computational Studies

机译:金属间化合物作为单原子合金催化剂的替代方案:来自先进的X射线光谱和计算研究的几何和电子结构

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摘要

Pt-Fe intermetallic compound (IMC) catalysts, including Pt3Fe, PtFe and PtFe3, are shown to have advantageous catalytic properties similar to those reported for single-atom alloy catalysts. Suppresion of the Pt ensembles responsible for hydrogenolysis results in high olefin selectivity during propane dehydrogenation. In situ resonant inelastic X-ray scattering (RIXS) results and density functional theory calculations show that these changes are associated with a decrease in the average energy of the filled 5d states of Pt in the Pt-Fe intermetallic compound structures compared to monometallic Pt, accompanied by an increase in the average energy of the unfilled valence bands. The decrease in energy of the filled Pt 5d orbitals increases with increasing Fe content in the IMC, i.e. PtFe3>PtFe>Pt3Fe. These results demonstrate that by altering the stoichiometry of IMC catalysts it is possible to control both the ensemble size and electronic properties of active sites, which affords another mechanism for tuning catalytic properties, in addition to changing promoter metals. The present study demonstrates the potential of ordered intermetallic compounds as an alternative to traditional solid-solution single-atom alloys to serve as catalysts with well-defined and uniform active sites.
机译:PT-Fe金属间化合物(IMC)催化剂,包括Pt3Fe,PTFE和PTFE3,被示出具有与单原子合金催化剂报道的那些类似的有利催化性质。负责氢解的PT系列的Suppresion在丙烷脱氢过程中导致高烯烃选择性。在原位共振非弹性X射线散射(RIX)结果和密度函数理论计算表明,与Monemetallic Pt相比,PT-Fe金属间化合物结构中填充的5D态的平均能量的平均能量的降低有关。伴随着未填充价值乐队的平均能量的增加。填充的PT 5D轨道的能量降低随着IMC中的加入Fe含量而增加,即PTFE3> PTFE> Pt3Fe。这些结果表明,通过改变IMC催化剂的化学计量,除了改变启动子金属之外,还可以控制活性位点的整体尺寸和电子性质,这为改变催化性质提供了另一种调节催化性质的机制。本研究证明了有序金属间化合物作为传统固体溶液单原子合金的替代物,其用作具有明确定义和均匀的活性位点的催化剂。

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