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Three-dimensional nanolithography using light scattering from colloidal particles

机译:使用胶体颗粒的光散射进行三维纳米光刻

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摘要

The interaction between light and colloidal elements can result in a wealth of interesting near-field optical patterns. By examining the optical and colloidal properties, the intensity distribution can be tailored and harnessed for three-dimensional nanolithography. Here, we examine the use of light scattering from colloidal particles to fabricate complex hollow nanostructures. In this approach, a single colloidal sphere is illuminated to create a scattering pattern, which is captured by a photoresist in close proximity. No external optical elements are required, and the colloidal elements alone provide the modulation of the optical intensity pattern. The fabricated nanostructures can be designed to have multiple shells, confined volumes, and single top openings, resembling "nano-volcanoes." The geometry of such structures is dependent on the scattered light distribution and can be accurately modeled by examining the light-particle interaction. The hollow nanostructures can be used to trap nanomaterial, and we demonstrate their ability to trap 50 nm silica nanoparticles. These well-defined surface hollow structures can be further functionalized for applications in controlled drug delivery and biotrapping. Colloidal elements with different geometries and material compositions can also be incorporated to examine other light-colloid interactions.
机译:光和胶体元素之间的相互作用会导致大量有趣的近场光学图案。通过检查光学和胶体性质,可以调整强度分布并利用其进行三维纳米光刻。在这里,我们研究了利用胶体颗粒的光散射来制造复杂的中空纳米结构。在这种方法中,单个胶体球被​​照亮以创建散射图案,该散射图案被紧邻的光刻胶捕获。不需要外部光学元件,并且仅胶体元件提供对光强度图案的调制。可以将制造的纳米结构设计为具有多个壳,有限的体积和单个顶部开口,类似于“纳米火山”。这样的结构的几何形状取决于散射的光分布,并且可以通过检查光-粒子相互作用来精确地建模。中空纳米结构可用于捕获纳米材料,并且我们展示了它们捕获50 nm二氧化硅纳米颗粒的能力。这些定义明确的表面空心结构可以进一步功能化,以用于受控的药物输送和生物捕获。具有不同几何形状和材料组成的胶体元素也可以并入以检查其他轻胶体相互作用。

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