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Taking Single Virus Detection and Sizing to the Limit with Molecular Sensitivity: The birth of NanoPlasmonic-Microcavity hybrid sensors

机译:将单个病毒检测和分子敏感性确定为极限:NanoPlasmonic-Microcavity混合传感器的诞生

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The BioPhotonics community is buzzing at the prospect that ulta-small bio-nanoparticles such as Polio virus and protein can be detected label-free in their native state and sized one at a time. As the awareness that the claim of label-free single protein sensing through the frequency shift of a bare microcavity by A.M. Armani et al in Science in 2007 fades from lack of independent experimental confirmation or a viable physical mechanism to account for the magnitude of the reported wavelength shifts, a new approach has captured the community's interest. It is a product of a marriage between nano-optics and micro-photonics, and is poised to take label-free sensing to the limit.
机译:BioPhotonics社区正在嗡嗡的前景是,可以检测到极小的生物纳米颗粒(如脊髓灰质炎病毒和蛋白质),而无需标记就可以在其原始状态下进行一次检测。由于A.M.声称通过裸露的微腔的频移实现无标记的单个蛋白质传感的主张。 Armani等人在2007年的《科学》杂志上由于缺乏独立的实验确认或缺乏可行的物理机制来解释所报道的波长偏移的程度而逐渐消失,一种新方法引起了社区的兴趣。它是纳米光学和微光子学结合的产物,有望将无标签传感技术发挥到极致。

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