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Detecting patchy nanoparticle assembly at the single-particle level

机译:检测的纳米颗粒组装的单粒子水平

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Patchy colloidal particles offer a unique platform to explore and investigate spatially inhomogeneous colloidal interactions. In the present work we provide direct, in situ experimental observation at the single particle level on the colloidal interaction driven formation of a heterodimer, consisting of a patchy nanorod and a sphere. The gold nanorods employed during the experiments feature positively charged tip regions, while the side of the rods is covered by surface grafted PEG. The driving force of the assembly is the electric double layer interaction between the nanorod and the nanosphere possessing opposite surface charge. The great advantage of using gold heterodimers is that their optical scattering spectrum characteristics are known to be very sensitive to the actual structure of the assembly due to plasmon hybridization. This was exploited to determine the structure of the heterodimer in situ upon formation in aqueous medium. The results indicate, that despite the attractive patches being located at the nanorod tips, for the given particle pairs the spheres readily bind to the side region of the nanorods in the aqueous medium during the assembly. Finite element simulations of the electric double layer interaction reveal that this is the energetically favorable configuration for the given heterodimer. This work demonstrates the potential of in situ experiments performed at single particle level for the characterization of self-assembling structures, which can contribute to the development of rationally designed nanoscale building blocks.
机译:的胶体粒子提供了独特的平台探索和研究空间非齐次胶体相互作用。现在我们提供直接原位在单粒子实验观察在胶体相互作用驱动的水平形成的异质二聚体组成的不完整的奈米棒和一个球体。在实验功能带正电的提示区域,而一边燃料棒被表面接枝PEG覆盖。组装的驱动力是电动的双层奈米棒和之间的交互nanosphere拥有相反的表面电荷。是他们形成光学散射光谱特征非常敏感的实际结构组装由于等离子体杂交。确定结构的异质二聚体现场在水介质中形成。结果表明,尽管有吸引力补丁是位于奈米棒的建议,给定的粒子对球体容易结合边地区的纳米水在组装中。双电层的模拟交互显示,这是积极的良好的配置异质二聚体。在单一的原位实验粒子水平的描述自组装结构,可以贡献设计合理的发展纳米尺度的构建块。

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