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Structural defect induced peak splitting in gold-copper bimetallic nanorods during growth by single particle spectroscopy

机译:结构性缺陷诱导峰分裂gold-copper双金属纳米棒在增长单粒子谱

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摘要

A single particle level study of bimetallic nanoparticle growth provides valuable information that is usually hidden in ensemble measurements, helping to improve the understanding of a reaction mechanism and overcome the synthetic challenges. In this study, we use single particle spectroscopy to monitor the changes in the scattering spectra of Au-Cu alloy nanorods during growth. We found that the unique features of the single particle scattering spectra were due to atomic level geometric defects in the nanorods. Electrodynamics simulations have demonstrated that small structural defects of a few atomic layers split the scattering peaks, giving rise to higher order modes, which do not exist in defect-free rods of similar geometry. The study shows that single particle scattering technique is as sensitive as high-resolution electron microscopy in revealing atomic level structural defects.
机译:双金属的单粒子水平研究纳米粒子的增长提供了有价值的信息通常隐藏在合奏测量,帮助改善的理解反应机理和克服合成挑战。光谱监测的变化散射光谱Au-Cu合金中纳米棒增长。单粒子散射光谱是由于原子纳米级别几何缺陷。电动力学模拟演示了那个小几个原子的结构性缺陷层将散射峰,高阶模式,不存在没有缺陷的几何相似。表明,单粒子散射技术高分辨率电子一样敏感吗显微镜在揭示原子水平结构缺陷。

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