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首页> 外文期刊>Nanoscale >Synthesis-atomic structure-properties relationships in metallic nanoparticles by total scattering experiments and 3D computer simulations: case of Pt-Ru nanoalloy catalysts
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Synthesis-atomic structure-properties relationships in metallic nanoparticles by total scattering experiments and 3D computer simulations: case of Pt-Ru nanoalloy catalysts

机译:Synthesis-atomic性质结构金属纳米粒子的总数的关系散射实验和3 d电脑模拟:例Pt-Ru nanoalloy催化剂

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An approach to determining the 3D atomic structure of metallic nanoparticles (NPs) in fine detail and using the unique knowledge obtained for rationalizing their synthesis and properties targeted for optimization is described and exemplified on Pt-Ru alloy NPs of importance to the development of devices for clean energy conversion such as fuel cells. In particular, PtxRu100-x alloy NPs, where x = 31, 49 and 75, are synthesized by wet chemistry and activated catalytically by a post-synthesis treatment involving heating under controlled N-2-H-2 atmosphere. So-activated NPs are evaluated as catalysts for gas-phase CO oxidation and ethanol electro-oxidation reactions taking place in fuel cells. Both as-synthesized and activated NPs are characterized structurally by total scattering experiments involving high-energy synchrotron X-ray diffraction coupled to atomic pair distribution functions (PDFs) analysis. 3D structure models both for as-synthesized and activated NPs are built by molecular dynamics simulations based on the archetypal for current theoretical modelling Sutton-Chen method. Models are refined against the experimental PDF data by reverse Monte Carlo simulations and analysed in terms of prime structural characteristics such as metal-to-metal bond lengths, bond angles and first coordination numbers for Pt and Ru atoms. Analysis indicates that, though of a similar type, the atomic structure of as-synthesized and respective activated NPs differ in several details of importance to NP catalytic properties. Structural characteristics of activated NPs and data for their catalytic activity are compared side by side and strong evidence found that electronic effects, indicated by significant changes in Pt-Pt and Ru-Ru metal bond lengths at NP surface, and practically unrecognized so far atomic ensemble effects, indicated by distinct stacking of atomic layers near NP surface and prevalence of particular configurations of Pt and Ru atoms in these layers, contribute to the observed enhancement of the catalytic activity of PtxRu100-x alloy NPs at x similar to 50. Implications of so-established relationships between the atomic structure and catalytic activity of Pt-Ru alloy NPs on efforts aimed at improving further the latter by tuning-up the former are discussed and the usefulness of detailed NP structure studies to advancing science and technology of metallic NPs - exemplified.
机译:一个方法来确定三维原子结构金属纳米颗粒(NPs)的细节和使用获得了独特的知识合理化他们的合成和性质针对优化和描述例证Pt-Ru合金NPs的重要性设备的清洁能源的发展转换,如燃料电池。x = 31 PtxRu100-x合金NPs, 49岁,75年,由湿化学合成,激活吗由post-synthesis催化地治疗包括加热N-2-H-2控制的气氛。催化剂气相氧化和乙醇electro-oxidation反应发生在燃料细胞。由总散射特征结构实验涉及高能同步加速器x射线衍射耦合原子分布函数(pdf)分析。as-synthesized和结构模型激活NPs是由分子动力学基于目前的原型的模拟理论建模Sutton-Chen方法。精制对实验的PDF数据吗反向蒙特卡罗模拟和分析主要结构特点等与金属键长,键角首先对Pt和俄文原子协调数字。分析表明,虽然类似的类型,as-synthesized的原子结构各自的激活NPs在几个不同NP催化属性重要性的细节。NPs和结构特点的激活数据对其催化活性进行了比较肩并肩,发现强有力的证据电子效应,表明意义重大Pt-Pt和Ru-Ru金属债券长度的变化NP表面,到目前为止几乎未被承认的原子整体效应,用不同的表示NP表面和附近的原子层的叠加Pt和普遍存在的特定配置俄罗斯在这些原子层,做出贡献观察到增强的催化活性PtxRu100-x合金NPs在x 50相似。如此稳固关系的影响原子结构与催化之间活动旨在Pt-Ru合金NPs的努力进一步改善后者通过调音前讨论的有效性详细的NP结构研究推进金属科技NPs -作为例证。

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