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One at a time: counting singlenanoparticle/ electrode collisions for accurate particle sizing by overcoming the instability of gold nanoparticles under electrolytic conditions

机译:一次一次:通过克服金纳米粒子在电解条件下的不稳定性,对单纳米粒子/电极碰撞进行计数,以实现精确的粒子尺寸

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摘要

In response to an increasing demand for understanding electrochemical processes on the nanometer scale, it now becomes possible to monitor electron transfer reactions at the single-nanoparticle level, namely particle collision electrochemistry. This technique has great potential in the development of research tools towards single-particle electrocatalysis and selective and multiplexed particle sizing. However, one existing problem that may discourage these applications is the relatively weak colloidal stability of nanoparticles in an electrolytic solution. Here we report on a facile but efficient way to achieve a good stability of gold nanoparticles in an acidic media so that 'zero-aggregation' collisions can be achieved at a carbon ultramicroelectrode. This allows us to obtain anodic dissolution currents from individual nanoparticles in a 'one particle at a time' manner, based on which accurate particle sizing with a resolution of 1-2 nm can be achieved. Our work strongly suggests that to maintain a well dispersed nanoparticle solution during a particle impact electrochemical experiment is critically important for accurate particle sizing, as well as other applications that require information to be extracted from individual nanoparticles (not their aggregates).
机译:响应于对理解纳米级电化学过程的日益增长的需求,现在变得有可能在单纳米粒子水平上监测电子转移反应,即粒子碰撞电化学。该技术在开发用于单粒子电催化以及选择性和多重粒子分级的研究工具方面具有巨大潜力。然而,可能阻碍这些应用的一个现有问题是纳米粒子在电解液中的相对较弱的胶体稳定性。在这里,我们报告了一种在酸性介质中实现金纳米颗粒良好稳定性的简便而有效的方法,从而可以在碳超微电极上实现“零聚集”碰撞。这使我们能够以“一次一个粒子”的方式从单个纳米粒子获得阳极溶解电流,基于此,可以实现分辨率为1-2 nm的精确粒子尺寸。我们的工作强烈建议,在颗粒碰撞电化学实验期间保持良好分散的纳米颗粒溶液对于精确的颗粒尺寸以及需要从单个纳米颗粒(而不是其聚集体)中提取信息的其他应用至关重要。

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