等离子体子
光学镊子
镊子
纳米-
纳米技术
俘获
材料科学
光学力
存水弯(水管)
光电子学
化学
化学物理
光学
物理
复合材料
生物
气象学
生态学
作者
Quanbo Jiang,Benoît Rogez,Jean-Benoît Claude,Guillaume Baffou,Jérôme Wenger
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-11-25
卷期号:20 (12): 8811-8817
被引量:69
标识
DOI:10.1021/acs.nanolett.0c03638
摘要
Plasmonic nano-tweezers use intense electric field gradients to generate optical forces able to trap nano-objects in liquids. However, part of the incident light is absorbed into the metal, and a supplementary thermophoretic force acting on the nano-object arises from the resulting temperature gradient. Plasmonic nano-tweezers thus face the challenge of disentangling the intricate contributions of the optical and thermophoretic forces. Here, we show that commonly added surfactants can unexpectedly impact the trap performance by acting on the thermophilic or thermophobic response of the nano-object. Using different surfactants in double nanohole plasmonic trapping experiments, we measure and compare the contributions of the thermophoretic and the optical forces, evidencing a trap stiffness 20x higher using sodium dodecyl sulfate (SDS) as compared to Triton X-100. This work uncovers an important mechanism in plasmonic nano-tweezers and provides guidelines to control and optimize the trap performance for different plasmonic designs.
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