等离子体子
材料科学
透射率
纳米尺度
等离子纳米粒子
光电子学
纳米颗粒
渲染(计算机图形)
纳米技术
磁场
物理
计算机科学
量子力学
计算机图形学(图像)
作者
Hyeon‐Ho Jeong,Andrew G. Mark,Tung‐Chun Lee,Mariana Alarcón‐Correa,Sahand Eslami,Tian Qiu,John G. Gibbs,Peer Fischer
出处
期刊:Nano Letters
[American Chemical Society]
日期:2016-07-01
卷期号:16 (8): 4887-4894
被引量:56
标识
DOI:10.1021/acs.nanolett.6b01404
摘要
Nanoplasmonic systems are valued for their strong optical response and their small size. Most plasmonic sensors and systems to date have been rigid and passive. However, rendering these structures dynamic opens new possibilities for applications. Here we demonstrate that dynamic plasmonic nanoparticles can be used as mechanical sensors to selectively probe the rheological properties of a fluid in situ at the nanoscale and in microscopic volumes. We fabricate chiral magneto-plasmonic nanocolloids that can be actuated by an external magnetic field, which in turn allows for the direct and fast modulation of their distinct optical response. The method is robust and allows nanorheological measurements with a mechanical sensitivity of ∼0.1 cP, even in strongly absorbing fluids with an optical density of up to OD ∼ 3 (∼0.1% light transmittance) and in the presence of scatterers (e.g., 50% v/v red blood cells).
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