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In Situ UV/Vis, SAXS, and TEM Study of Single-Phase Gold Nanoparticle Growth

机译:单相金纳米粒子生长的原位UV / Vis,SAXS和TEM研究

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摘要

Given the diverse scientific and technological applications of gold nanoparticles (AuNPs), understanding the impact of macromolecular additives on the distribution of size, shape, and composition is crucial to ensure reproducibility and lower production cost. In situ measurement of the evolution of these distributions challenges current techniques; however, it is critical for in-line manufacturing controls. Using mild Au(I) reduction by tert-butylamine-borane in toluene, the utility and limitations of SAXS, UV/Vis spectroscopy, and TEM are considered by comparing the mean nanoparticle size, size distribution, and relative number density. Individually, these techniques are insufficient to follow these parameters through the initial process of nucleation and growth; either providing insufficient information on the number of particles (UV/Vis), introducing artifacts (TEM), or not providing a unique solution for the shape of the distribution(SAXS). However, when used in conjunction, especially SAXS calibrated with TEM of reaction aliquots, the time evolution of these parameters can be quantified. For the single-phase AuNP synthesis with Au(I) and mild reductants, four distinct experimental regions are revealed that entail two growth mechanisms, which complement previous discussions of single-mode growth kinetics. The kinetics of Au(I):borane reactions are dependent on the Au precursor/reductant ratio and the thiol capping agent length, when reductant concentration is low. The final reaction products exhibit an LSW size distribution.
机译:鉴于金纳米颗粒(AuNP)的多种科学技术应用,了解高分子添加剂对尺寸,形状和组成分布的影响对于确保可重复性和降低生产成本至关重要。对这些分布演变的原位测量对当前技术提出了挑战。但是,这对于在线制造控制至关重要。使用叔丁基胺-硼烷在甲苯中温和的Au(I)还原,通过比较平均纳米颗粒尺寸,尺寸分布和相对数密度,可以考虑SAXS,UV / Vis光谱和TEM的实用性和局限性。单独地,这些技术不足以在成核和生长的初始过程中遵循这些参数。要么无法提供足够的有关粒子数量的信息(UV / Vis),要么会引入伪影(TEM),要么无法为分布的形状提供唯一的解决方案(SAXS)。但是,当结合使用时,尤其是用反应等分试样的TEM校准的SAXS,可以量化这些参数的时间演变。对于具有Au(I)和轻度还原剂的单相AuNP合成,揭示了四个不同的实验区域,这些区域需要两个生长机制,从而补充了先前对单模生长动力学的讨论。当还原剂浓度低时,Au(I):硼烷反应的动力学取决于Au前体/还原剂比率和硫醇封端剂长度。最终反应产物表现出LSW尺寸分布。

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