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带有集成微流控的开槽光子晶体腔用于生物传感应用。

Slotted photonic crystal cavities with integrated microfluidics for biosensing applications.

机构信息

School of Physics and Astronomy, University of St Andrews, North Haugh, St Andrews, Fife, Scotland, UK.

出版信息

Biosens Bioelectron. 2011 Sep 15;27(1):101-5. doi: 10.1016/j.bios.2011.06.023. Epub 2011 Jun 25.

Abstract

We demonstrate the detection of dissolved avidin concentrations as low as 15 nM or 1 μg/ml using functionalized slotted photonic crystal cavities with integrated microfluidics. With a cavity sensing surface area of approximately 2.2 μm(2), we are able to detect surface mass densities of order 60 pg/mm(2) corresponding to a bound mass of approximately 100 ag. The ultra-compact size of the sensors makes them attractive for lab-on-a-chip applications where high densities of independent sensing elements are desired within a small area. The high sensitivity over an extremely small area is due to the strong modal overlap with the analyte enabled by the slotted waveguide cavity geometry that we employ. This strong overlap results in larger shifts in the cavity peak wavelength when compared to competing approaches.

摘要

我们使用带有集成微流控系统的功能化缝隙光子晶体腔来检测低至 15 nM 或 1 μg/ml 的溶解亲和素浓度。通过具有约 2.2 μm(2)的腔感测表面积,我们能够检测到约 60 pg/mm(2)的表面质量密度,对应于约 100 ag 的结合质量。传感器的超紧凑尺寸使其成为芯片实验室应用的理想选择,因为在小面积内需要高密度的独立感测元件。在极小区域内具有极高灵敏度是由于我们采用的缝隙波导腔几何形状实现了与分析物的强模式重叠。与竞争方法相比,这种强重叠导致腔峰值波长的更大偏移。

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