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Recognition-Mediated Particle Detection Under Microfluidic Flow with Waveguide-Coupled 2D Photonic Crystals: Towards Integrated Photonic Virus Detectors

机译:波导耦合的二维光子晶体在微流体流下的识别介导的粒子检测:朝集成光子病毒检测器。

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摘要

Label-free biodetection schemes compatible with standard CMOS fabrication methods constitute an important goal, as these are enabling tools for the mass production of high-sensitivity biosensors. Two-dimensional slab photonic crystal (2D slab-PhC) sensors have been posited as ultrahigh-sensitivity detection components, but to date recognition-mediated detection of viruses or simulants under flow has not been demonstrated. We report the design and optimization of a new W1 waveguide-coupled 2D slab-PhC sensor, with a geometry well suited to virus detection. Proof of concept experiments with fluorescent latex particles verified that the sensor could respond to infiltration of a single particle, both in air and under an aqueous cover layer. Subsequent experiments with antibody-functionalized sensors and virus simulants confirmed the ability of the device to detect virus-sized particles under flow via a recognition-mediated process. This work sets the stage for incorporation of 2D slab-PhC sensors into fully integrated photonic sensor systems.
机译:与标准CMOS制造方法兼容的无标记生物检测方案构成了一个重要目标,因为它们是大规模生产高灵敏度生物传感器的可行工具。二维平板光子晶体(2D slab-PhC)传感器已被放置为超高灵敏度检测组件,但是迄今为止,尚未证明在流动下识别介导的病毒或模拟物的检测。我们报告了新型W1波导耦合2D平板-PhC传感器的设计和优化,其几何结构非常适合病毒检测。用荧光胶乳颗粒进行的概念验证实验证明,该传感器可以响应单个颗粒在空气中和含水覆盖层下的浸润。随后进行的具有抗体功能化传感器和病毒模拟物的实验证实了该设备能够通过识别介导的过程检测流动中病毒大小的颗粒的能力。这项工作为将2D平板式PhC传感器整合到完全集成的光子传感器系统中奠定了基础。

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  • 期刊名称 other
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  • 年(卷),期 -1(17),9
  • 年度 -1
  • 页码 1570–1577
  • 总页数 16
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