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Adsorbate-induced structural changes in 1-3 nm platinumnanoparticles

机译:1-3 nm铂吸附剂诱导的结构变化纳米粒子

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摘要

We investigated changes in the Pt–Pt bond distance, particle size, crystallinity, and coordination of Pt nanoparticles as a function of particle size (1–3 nm) and adsorbate (H2, CO) using synchrotron radiation pair distribution function (PDF) and X-ray absorption spectroscopy (XAS) measurements. The ∼1 nm Pt nanoparticles showed a Pt–Pt bond distance contraction of ∼1.4%. The adsorption of H2 and CO at room temperature relaxed the Pt–Pt bond distance contraction to a value close to that of bulk fcc Pt. The adsorption of H2 improved the crystallinity of the small Pt nanoparticles. However, CO adsorption generated a more disordered fcc structure for the 1–3 nm Pt nanoparticles compared to the H2 adsorption Pt nanoparticles. In situ XANES measurements revealed that this disorder results from the electron back-donation of the Pt nanoparticles to CO, leading to a higher degree of rehybridization of the metal orbitals in the Pt-adsorbate system.
机译:我们使用同步辐射对对分布函数(PDF)和Pt-Pt键距,粒径,结晶度以及Pt纳米粒子的配位随粒径(1-3 nm)和被吸附物(H2,CO)的变化进行了研究, X射线吸收光谱(XAS)测量。约1 nm的Pt纳米颗粒显示出约1.4%的Pt–Pt键距收缩。室温下H2和CO的吸附使Pt-Pt键距收缩缩小到接近于体积fcc Pt的值。 H2的吸附提高了小Pt纳米颗粒的结晶度。但是,与H2吸附Pt纳米颗粒相比,CO吸附对于1-3 nm Pt纳米颗粒产生了更无序的fcc结构。原位XANES测量表明,这种紊乱是由Pt纳米粒子向CO的电子反赠导致的,从而导致Pt-吸附物系统中金属轨道的再杂化程度更高。

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