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Lattice constant, bond-orientational order, and solid solubility of PdPt bimetallic nanoparticles

机译:PdPt双金属纳米粒子的晶格常数,键向序和固溶度

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Crystal structure deviations of bimetallic Pd-Pt nanoparticles (NPs) were investigated using synchrotron high-energy X-ray diffraction. The samples comprised Pd NPs and bimetallic Pd-Pt NPs featuring those with a Pd-core/Pt-shell structure as well as PdPt solid-solution NPs with varying diameters of 6.1, 6.7, 8.1, and 11.2 nm. The Rietveld method was used to find the lattice constant of the Pd NPs, which was larger than the bulk value, while reverse Monte Carlo modeling revealed that they possessed a highly disordered structure. The lattice constants of the Pd-Pt bimetallic NPs were found to vary with the Pt content. For Pd-core/Pt-shell structure NPs, the lattice constants decreased with the Pt content owing to lattice relaxation at the core/shell interface. After a reaction process of hydrogen absorption/desorption, the lattice constant of the resulting PdPt solid-solution NPs increased with the NP Pt content, which followed Vegard's law. The degree of disorder of the solid-solution NPs was evaluated by the PBOO values (i.e., structural parameters describing the deviation of the local structure from an ideal crystal structure) and was found to decrease with the Pt content. A short-range-order parameter was introduced using a three-dimensional reverse Monte Carlo configuration structure to evaluate the atomic-scale solid solubility of the Pd0.92Pt0.08 and Pd0.79Pt0.21 NPs. The parameter values obtained were close to 0, indicating that the Pd and Pt atoms were essentially randomly dispersed in the solid-solution NPs. (C) 2018 Author(s).
机译:使用同步加速器高能X射线衍射研究了双金属Pd-Pt纳米颗粒(NPs)的晶体结构偏差。样品包括具有Pd核/ Pt壳结构的Pd NP和双金属Pd-Pt NP,以及直径分别为6.1、6.7、8.1和11.2 nm的PdPt固溶NP。 Rietveld方法用于查找Pd NPs的晶格常数,该常数大于体积值,而反向蒙特卡洛模型表明它们具有高度无序的结构。发现Pd-Pt双金属NP的晶格常数随Pt含量而变化。对于Pd-核/ Pt-壳结构NP,由于核/壳界面处的晶格弛豫,晶格常数随Pt含量而降低。经过氢吸收/解吸的反应过程后,所得PdPt固溶NP的晶格常数随NP Pt含量的增加而增加,这遵循了Vegard定律。通过PBOO值(即描述局部结构与理想晶体结构的偏差的结构参数)评估固溶NP的无序度,并且发现其随Pt含量降低。使用三维反向蒙特卡洛组态结构引入了一个短程参数,以评估Pd0.92Pt0.08和Pd0.79Pt0.21 NP的原子级固溶度。获得的参数值接近于0,表明Pd和Pt原子基本上随机地分散在固溶NP中。 (C)2018作者。

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