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球体与棒体:金纳米粒子的形状影响其聚集和沉积行为。

Spheres vs. rods: the shape of gold nanoparticles influences aggregation and deposition behavior.

机构信息

Department of Civil and Environmental Engineering, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Chemosphere. 2013 Mar;91(1):93-8. doi: 10.1016/j.chemosphere.2012.11.031. Epub 2012 Dec 14.

Abstract

The influence of shape on nanomaterial aggregation and deposition was systematically studied with poly-acrylic acid (PAA) coated uniform-sized gold nanospheres (AuNSs) and nanorods (AuNRs). Time resolved dynamic light scattering was employed to study their aggregation kinetics in a wide range of mono- and di-valent electrolyte conditions. Results indicated that PAA coated AuNSs have higher aggregation propensity compared to anisotropic PAA coated AuNRs, as observed through critical coagulation concentration (CCC). The CCC values were estimated as 50 mM NaCl and 1.8 mM CaCl(2) for AuNS, which showed substantial increase to 250 mM NaCl and 7 mM CaCl(2) for anisotropic AuNRs. Though electrokinetic behavior showed similar surface potential for the spherical and rod-shaped materials, the geometric differences between the samples have likely resulted in unique conformation of the PAA coatings, leading to different magnitudes of steric hindrances and hence yielding the observed aggregation behavior. The deposition kinetics was monitored using the quartz crystal microbalance with dissipation technique. AuNRs showed relatively slower deposition compared to AuNSs for low electrolytes concentrations. With the increase in electrolyte concentration, the differences in deposition rates between spheres and rods diminished. The results from this study showed that the shape of nanomaterials can influence interfacial properties and result in unique aggregation and deposition behavior under typical aquatic conditions.

摘要

采用聚丙稀酸(PAA)包覆的单分散金纳米球(AuNSs)和纳米棒(AuNRs),系统研究了形状对纳米材料聚集和沉积的影响。采用时间分辨动态光散射研究了在宽范围的单价和二价电解质条件下的聚集动力学。结果表明,与各向异性的 PAA 包覆的 AuNRs 相比,PAA 包覆的 AuNSs 具有更高的聚集倾向,这可以通过临界聚沉浓度(CCC)观察到。AuNS 的 CCC 值估计为 50mM NaCl 和 1.8mM CaCl2,对于各向异性的 AuNRs 则显著增加至 250mM NaCl 和 7mM CaCl2。尽管电动行为表明球形和棒形材料具有相似的表面电位,但样品之间的几何差异可能导致 PAA 涂层具有独特的构象,从而产生不同程度的空间位阻,从而导致观察到的聚集行为。采用石英晶体微天平监测沉积动力学。与 AuNSs 相比,在低电解质浓度下,AuNRs 的沉积速率相对较慢。随着电解质浓度的增加,球体和棒体之间沉积速率的差异减小。这项研究的结果表明,纳米材料的形状可以影响界面性质,并在典型的水相条件下导致独特的聚集和沉积行为。

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