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Bimetallic Au-Pd Alloy Catalysts for N2O Decomposition: Effects of Surface Structures on Catalytic Activity

机译:Bimetallic au-pd alloy Catalysts for N2O Decomposition: Effects of surface structures on Catalytic activity

摘要

Highly dispersed and well-homogenized Au-Pd alloy nanoparticles with average particle sizes of similar to 2 nm and tunable Au/Pd ratios were prepared by an adsorption- reduction method on the amine-functionalized SBA-15 support. The chemisorptions of H-2 and CO as well as the IR spectra of CO adsorption show that with increase of the Au/Pd ratios the surface Pd atoms are separated by gold atoms gradually until totally isolated at Au/Pd >= 0.95, which indicates the formation of Pd single atoms at higher Au/Pd ratios. The chemisorption of O-2 shows that both the adsorption heat and the saturation uptake decrease with an increase of Au/Pd ratio, suggesting alloying Pd with gold will facilitate the desorption of oxygen adatoms as O-2, which is generally the rate-determining step for N2O decomposition reaction. Theoretical investigations using periodic DFT methods confirm the tunable O-2 desorption ability by alloying Pd with Au and indicate that contiguously located Pd sites are indispensable for N2O decomposition because they function as the active sites for the elementary step of N2O decomposition into N-2 and oxygen adatom, which becomes the rate-determining step over the Au-Pd alloy catalysts.
机译:通过吸附还原法在胺官能化的SBA-15载体上制备了平均粒径接近2 nm且Au / Pd比可调的高度分散且均质化的Au-Pd合金纳米颗粒。 H-2和CO的化学吸附以及CO吸附的IR光谱表明,随着Au / Pd比的增加,表面Pd原子逐渐被金原子分离,直到Au / Pd> = 0.95时完全分离。在较高的Au / Pd比下形成Pd单原子。 O-2的化学吸附表明,随着Au / Pd比的增加,吸附热和饱和吸收量均降低,这表明Pd与金合金化将促进氧原子作为O-2的解吸,这通常是速率的决定因素。 N 2 O分解反应的步骤。使用周期性DFT方法进行的理论研究证实了Pd与Au合金化后可调节的O-2解吸能力,并表明连续定位的Pd位点对于N2O分解是必不可少的,因为它们充当N2O分解为N-2和N2O的基本步骤的活性位点。氧原子,它成为Au-Pd合金催化剂上决定速率的步骤。

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