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首页> 外文期刊>ACS nano >Patchy and Janus Nanoparticles by Self-Organization of Mixtures of Fluorinated and Hydrogenated Alkanethiolates on the Surface of a Gold Core
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Patchy and Janus Nanoparticles by Self-Organization of Mixtures of Fluorinated and Hydrogenated Alkanethiolates on the Surface of a Gold Core

机译:通过自组织金核表面上的氟化和氢化链烷硫醇盐混合物的自组织产生斑片状和Janus纳米粒子

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摘要

The spontaneous self-organization of dissimilar ligands on the surface of metal nanoparticles is a very appealing approach to obtain anisotropic "spherical". systems. In addition to differences in ligand length and end groups, a further thermodynamic driving force to control the self-assembled monolayer organization may become available if the ligands are inherently immiscible, as is the case of hydrogenated (H-) and fluorinated (F-) species. Here, we validate the viability of this approach by combining F-19 NMR experiments and multiscale molecular simulations on large sets of mixed-monolayer-protected gold nanoparticles (NPs). The phase segregation of blends of F- and H-thiolates grafted on the surface of gold NPs allows a straightforward approach to patterned mixed monolayers, with the shapes of the monolayer domains being encoded in the structure of the F/H-thiolate ligands. The results obtained from this comprehensive study offer molecular design rules to achieve a precise control of inorganic nanoparticles protected by specifically patterned monolayers.
机译:金属纳米粒子表面上不同配体的自发自组织是获得各向异性“球形”的一种非常吸引人的方法。系统。除了配体长度和端基的差异外,如果配体固有地不混溶,则可以使用进一步的热力学驱动力来控制自组装单层结构,如氢化(H-)和氟化(F-)的情况种类。在这里,我们通过将F-19 NMR实验与大型混合单层保护的金纳米颗粒(NPs)上的多尺度分子模拟相结合,验证了该方法的可行性。在金纳米粒子表面上接枝的F-和H-硫醇盐的共混物的相分离使形成图案的混合单层的方法更简单,单层结构域的形状编码在F / H-硫醇盐配体的结构中。从这项全面的研究中获得的结果提供了分子设计规则,以实现对特定图案化单层保护的无机纳米颗粒的精确控制。

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