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Exploratory Study on Size-Selective Production of Gold Nanospheres in Aqueous Solution

机译:水溶液中金纳米球尺寸选择生产的探索性研究

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By applying high pressures well above the critical pressure of water (22.1 MPa), we prepared gold nanoparticles (Au NPs) using a nanosecond pulsed laser-induced size-reduction technique. The Au NPs thus obtained exhibited a remarkably narrow size distribution and size-selectivity dependent on the applied laser energy density. This is significant because previous attempts under ambient pressure failed to achieve such size-selective generation. Very spherical Au NPs of diameters, 46 nm and 33 nm with a standard deviation of only 2-3 nm, were obtained at the expense of original faceted 58-nm Au NPs (Fig. 1). We ascribed our results to the formation of a supercritical water layer surrounding the liquid droplet NP transformed by laser heating. The supercritical layer originates from heat transfer from the particle, leading to water temperatures above the critical point of 647 K, which acts as an effective heat sink for photothermal size reduction.
机译:通过施加远高于水的临界压力(22.1 MPa)的高压,我们使用纳秒脉冲激光诱导的尺寸减小技术制备了金纳米颗粒(Au NPs)。如此获得的Au NP显示出非常窄的尺寸分布和尺寸选择性,这取决于所施加的激光能量密度。这是重要的,因为先前在环境压力下的尝试未能实现这种尺寸选择的生成。获得了直径为46 nm和33 nm的非常球形的Au NP,标准偏差仅为2-3 nm,但以原始刻面58 nm Au NP为代价(图1)。我们将结果归因于围绕激光加热转化的液滴NP的超临界水层的形成。超临界层源自粒子的热传递,导致水温高于647 K的临界点,这是降低光热尺寸的有效散热器。

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