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首页> 外文期刊>ACS nano >Photothermal Heating Enabled by Plasmonic Nanostructures for Electrokinetic Manipulation and Sorting of Particles
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Photothermal Heating Enabled by Plasmonic Nanostructures for Electrokinetic Manipulation and Sorting of Particles

机译:等离子纳米结构实现的光热加热,用于电动操纵和颗粒分类。

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摘要

Plasmonic nanostructures support strong electromagnetic field enhancement or optical "hot spots" that are accompanied by local heat generation. This heating effect is generally seen as an obstacle to stable trapping of particles on a plasmonic substrate. In this work, instead of treating the heating effect as a hindrance, we utilized the collective photoinduced heating of the nanostructure array for high-throughput trapping of particles on a plasmonic nanostructured substrate. The photoinduced heating of the nanostructures is combined with an ac electric field of less than 100 kHz, which results in creation of a strong electrothermal microfluidic flow. This flow rapidly transports suspended particles toward the plasmonic substrate, where they are captured by local electric field effects. This work is envisioned to have application in biosensing and surface-enhanced spectroscopies such as SERS.
机译:等离子体纳米结构支持强大的电磁场增强或伴随局部发热的光学“热点”。通常认为这种加热效果是将粒子稳定捕获在等离激元衬底上的障碍。在这项工作中,我们没有将加热效应视为障碍,而是利用了纳米结构阵列的集体光诱导加热,以高通量捕获等离子体纳米结构基板上的颗粒。纳米结构的光诱导加热与小于100 kHz的交流电场相结合,从而产生了强大的电热微流。这种流动将悬浮的粒子快速传输到等离子体衬底,在那里它们被局部电场效应捕获。预计这项工作将应用于生物传感和表面增强光谱学,例如SERS。

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