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Controlling Assembly of Mixed Thiol Monolayers on Silver Nanoparticles to Tune Their Surface Properties

机译:控制纳米银上混合的巯基单分子膜的组装以调节其表面性能

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摘要

Modifying the surfaces of metal nanoparticles with self-assembled monolayers of functionalized thiols provides a simple and direct method to alter their surface properties. Mixed self-assembled monolayers can extend this approach since, in principle, the surfaces can be tuned by altering the proportion of each modifier that is adsorbed. However, this works best if the composition and microstructure of the monolayers can be controlled. Here, we have modified preprepared silver colloids with binary mixtures of thiols at varying concentrations and modifier ratios. Surface-enhanced Raman spectroscopy was then used to determine the effect of altering these parameters on the composition of the resulting mixed monolayers. The data could be explained using a new model based on a modified competitive Langmuir approach. It was found that the composition of the mixed monolayer only reflected the ratio of modifiers in the feedstock when the total amount of modifier was sufficient for approximately one monolayer coverage. At higher modifier concentrations the thermodynamically favored modifier dominated, but working at near monolayer concentrations allowed the surface composition to be controlled by changing the ratios of modifiers. Finally, a positively charged porphyrin probe molecule was used to investigate the microstructure of the mixed monolayers, i.e., homogeneous versus domains. In this case the modifier domains were found to be <2 nm.
机译:用功能化硫醇的自组装单层修饰金属纳米颗粒的表面提供了一种简单直接的方法来改变其表面性能。混合的自组装单分子层可以扩展这种方法,因为原则上可以通过更改吸附的每种改性剂的比例来调整表面。但是,如果可以控制单层的组成和微观结构,则效果最好。在这里,我们用硫醇的二元混合物以不同的浓度和改性剂比例改性了制备的银胶体。然后使用表面增强拉曼光谱确定改变这些参数对所得混合单分子层组成的影响。可以使用基于改进的竞争Langmuir方法的新模型来解释数据。已经发现,当改性剂的总量足以覆盖约一个单层时,混合单层的组成仅反映了进料中改性剂的比例。在较高的改性剂浓度下,热力学上有利的改性剂占主导,但是在接近单层浓度下工作使得可以通过改变改性剂的比例来控制表面组成。最后,使用带正电的卟啉探针分子研究混合单层的微观结构,即均质区与结构域。在这种情况下,发现修饰剂域小于2nm。

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