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Structural and Equilibrium Effects of the Surface Passivant on the Stability of Au Nanorods

机译:表面钝化剂对金纳米棒稳定性的结构和平衡作用

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Au nanomaterials are well-known for their optical properties, where Au nanorods have demonstrated unique capabilities because of their readily tunable size and shape. Unfortunately, functionalization of the material surface is challenging because of their lack of stability after only a few purification cycles. Here, we demonstrate that enhanced Au-nanorod stability can be achieved by purifying the materials using dilute cetyltrimethylammonium bromide (CTAB) wash solutions. To this end, purifying the materials in such a manner shifts the passivant on/off equilibrium to maintain surfactant adsorption to the metal surface, leading to enhanced stability. Interestingly, from this study, a bimodal distribution of Au nanorods was evident, where one species was prone to bulk nanorods was evident, where one species was prone to bulk aggregation, whereas the second population remained stable in solution. This likely arose from defects within the CTAB bilayer at the nanorod surface, resulting in selective material aggregation. For this, those structures with high numbers of defects aggregated, whereas nanorods with a more pristine bilayer remained stable. Coating of the Au nanorods using polyelectrolytes was also explored for enhanced stability, where the composition of the anionic polymer played an important role in controlling materials stability. Taken together, these results demonstrate that the stability of Au nanorods can be directly tuned by the solvent-exposed surface structure, which could be manipulated to allow for the extensive material functionalization that is required for the generation of nanoplatforms with multiple applications.
机译:金纳米材料以其光学特性而闻名,金纳米棒由于其易于调节的尺寸和形状而显示出独特的功能。不幸的是,材料表面的功能化具有挑战性,因为它们仅经过几个纯化循环便缺乏稳定性。在这里,我们证明可以通过使用稀十六烷基三甲基溴化铵(CTAB)洗涤液纯化材料来提高金纳米级稳定性。为此,以这种方式纯化材料会改变钝化剂的开/关平衡,以保持表面活性剂吸附到金属表面,从而提高稳定性。有趣的是,从这项研究中,金纳米棒的双峰分布是明显的,其中一种物种易于散装纳米棒,一种物种易于散装聚集,而第二种种群在溶液中保持稳定。这可能是由于纳米棒表面CTAB双层内的缺陷所致,导致选择性的材料聚集。为此,具有大量缺陷的那些结构聚集,而具有更原始双层的纳米棒保持稳定。还研究了使用聚电解质涂覆金纳米棒的方法,以提高稳定性,其中阴离子聚合物的组成在控制材料稳定性方面起着重要作用。综上所述,这些结果表明,金纳米棒的稳定性可以直接通过暴露于溶剂的表面结构进行调节,可以对其进行操纵以允许产生具有多种应用的纳米平台所需的广泛的材料功能化。

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