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Size and composition effects in polymer-protected ultrafine bimetallic PtxRu1-x (0 x 1) particles - art. no. 235407

机译:聚合物保护的超细双金属PtxRu1-x(0

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摘要

Ultrafine PtxRu1-x particles (with 0 less than or equal tox less than or equal to1), synthesized by decomposition of organometallic precursors in the presence of a stabilizing polymer, are studied using both high-resolution transmission electron microscopy and wide-angle x-ray scattering techniques. In this paper, we focus on the influence of the size and the composition on the atomic organization and structural features of Pt, Ru, and Pt-Ru particles. It is shown that the pure Pt and Ru particles crystallize in the same structure as in the bulk, i.e., face centered cubic (fcc) for platinum and hexagonal close packed (hcp) for ruthenium. A modification of the cell parameters due to size reduction is observed. In particular, evidence is given for the change of the c/a ratio in Ru particles. The alloy particles are also crystalline, whatever the composition. The role of the composition in the structural transition from the fee structure to the hcp one in nanoscaled particles is demonstrated. The mechanism of structural transition is fully described. [References: 30]
机译:使用高分辨率透射电子显微镜和广角x-射线技术研究了超细PtxRu1-x颗粒(0小于等于x小于等于1),该颗粒是在稳定聚合物存在下通过有机金属前体的分解合成的射线散射技术。在本文中,我们集中于大小和组成对Pt,Ru和Pt-Ru粒子的原子组织和结构特征的影响。结果表明,纯的Pt和Ru颗粒的结晶结构与本体中的相同,即铂的面心立方(fcc)和钌的六方密堆积(hcp)。观察到由于尺寸减小引起的细胞参数的改变。特别地,给出了Ru颗粒中c / a比变化的证据。无论组成如何,合金颗粒也是结晶的。证明了该组合物在纳米级颗粒中从电荷结构向hcp结构转变的作用。结构转变的机理已得到充分描述。 [参考:30]

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