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Controlling ultrasmall gold nanoparticles with atomic precision

机译:用原子精度控制超大金纳米粒子

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摘要

Gold nanoparticles are probably the nanoparticles that have been best studied for the longest time due to their stability, physicochemical properties and applications. Controlling gold nanoparticles with atomic precision is of significance for subsequent research on their structures, properties and applications, which is a dream that has been pursued for many years since ruby gold was first obtained by Faraday in 1857. Fortunately, this dream has recently been partially realized for some ultrasmall gold nanoparticles (nanoclusters). However, rationally designing and synthesizing gold nanoparticles with atomic precision are still distant goals, and this challenge might rely primarily on rich atomically precise gold nanoparticle libraries and the in-depth understanding of metal nanoparticle chemistry. Herein, we review general synthesis strategies and some facile synthesis methods, with an emphasis on the controlling parameters determined from well-documented results, which might have important implications for future nanoparticle synthesis with atomic precision and facilitate related research and applications.
机译:由于其稳定性,物理化学性质和应用,金纳米粒子可能是最佳地研究的纳米颗粒。用原子精度控制黄金纳米粒子对于随后的结构,性质和应用的研究具有重要意义,这是自从1857年由法拉第首次获得的Ruby Gold获得多年以来的梦想。幸运的是,这一梦想最近部分是部分实现了一些超级超金纳米颗粒(纳米团簇)。然而,理性地设计和合成具有原子精度的金纳米颗粒仍然是遥远的目标,这一挑战可能主要依赖于富原子精确的金纳米颗粒文库和对金属纳米粒子化学的深入了解。在此,我们审查了一般合成策略和一些容易合成方法,重点是从记录良好的结果中确定的控制参数,这可能对未来纳米粒子合成具有原子精度和促进相关研究和应用的重要意义。

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