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Optical manipulation of metal-silica hybrid nanoparticles

机译:金属-二氧化硅杂化纳米粒子的光学处理

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Metallic nanoparticles are known to experience enhanced optical trap strengths compared to dielectric particles due to the increased optical volume, or polarizability. In our experience, larger metallic particles (~μm) are not easily trapped because momentum effects due to reflection become significant. Hybrid particles comprised of both metal and dielectric materials can circumvent this limitation while still utilizing a larger polarizability. Heterogeneous nanosystems were fabricated by embedding/coating silica nanoparticles with gold or silver in varying amounts and distributions. These compound particles were manipulated via optical tweezers, and their trapping characteristics quantitatively and qualitatively compared to homogeneous particles of comparable size. The parameters explored include the dependence of the trapping force on the percentage of loading of gold, the size of the embedded colloids, and the distribution of metal within the surrounding matrix or on its surface.
机译:已知由于增加的光学体积或极化率,与电介质颗粒相比,金属纳米颗粒具有增强的光阱强度。根据我们的经验,较大的金属颗粒(〜μm)不容易被捕获,因为反射引起的动量效应变得很明显。由金属和介电材料组成的杂化颗粒可以克服这一限制,同时仍能利用更大的极化率。通过用不同数量和分布的金或银嵌入/涂覆二氧化硅纳米粒子,可以制造出异质纳米系统。这些化合物颗粒是通过光镊进行操作的,与相当大小的均质颗粒相比,它们的捕获特性在数量和质量上都得到了提高。探索的参数包括诱捕力对金的负载百分比,包埋的胶体的大小以及周围基质内或其表面上金属的分布的依赖性。

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