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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Laser Fragmentation of Colloidal Gold Nanoparticles with High-Intensity Nanosecond Pulses is Driven by a Single-Step Fragmentation Mechanism with a Defined Educt Particle-Size Threshold
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Laser Fragmentation of Colloidal Gold Nanoparticles with High-Intensity Nanosecond Pulses is Driven by a Single-Step Fragmentation Mechanism with a Defined Educt Particle-Size Threshold

机译:具有高强度纳秒脉冲的胶体金纳米颗粒的激光碎片由具有限定的虚拟粒度阈值的单步破碎机制驱动

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摘要

Laser-inducd fragmentation is a promising tool for controlling the particle size of ligand-free colloidal nanoparticles and to synthesize ligand-free gold nanoclusters. However, because the underlying mechanisms are not fully understood, increasing the yield of this process remains challenging. In this work, we examine the pulsed laser fragmentation of gold nanoparticles in liquid under statistical single-pulse conditions with high-fluence nanosecond pulses and correlate them with the educt particle size, number of pulses, and laser fluence. We conclusively prove that the fragmentation process of gold nanoparticles is a one-pulse and one-step event, which yields monomodal particles of 10 nm down to 2.8 +/- 0.1 rim when exceeding a pulse peak power of 1.6 X 10(12) W/m(2) and when all educt particles are larger than 13.4 nm. This size threshold for quantitative fragmentation fits well with the size limit of 13.1 nm calculated with respect to the evaporation-heat-energy balance. Furthermore, we found strong evidence that the number of irradiation cycles, varied within the regime of one to four laser pulses/colloid volume, can be used to tune the surface chemistry and surface charge of the resulting nanoparticles in an aqueous medium.
机译:激光诱导碎片是一种有助于控制无配胶胶体纳米颗粒的粒径并合成无配和无金纳米蛋白的工具。然而,由于潜在的机制尚未完全理解,提高该过程的产量仍然具有挑战性。在这项工作中,我们在统计单脉冲条件下用高流量纳秒脉冲检查液体中金纳米颗粒的脉冲激光片段化,并将它们与光阑粒径,脉冲数和激光流量相关联。我们最终证明金纳米颗粒的碎裂过程是一种脉冲和一步的事件,其产生单态颗粒的&超过2.8 +/- 0.1轮辋超过1.6×10(12)W / m(2)的脉冲峰值功率,并且当所有的防御颗粒大于13.4nm时。定量碎片的这种尺寸阈值与相对于蒸发 - 热能平衡计算的13.1nm的尺寸限制很大。此外,我们发现强有力的证据表明,辐照循环的数量在一至四个激光脉冲/胶体体积的制度内变化,可用于调节所得纳米颗粒在水性介质中的表面化学和表面电荷。

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