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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Anisotropic Fluorescence Emission and Photobleaching at the Surface of One-Dimensional Photonic Crystals Sustaining Bloch Surface Waves. II. Experiments
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Anisotropic Fluorescence Emission and Photobleaching at the Surface of One-Dimensional Photonic Crystals Sustaining Bloch Surface Waves. II. Experiments

机译:一维光子晶体表面的各向异性荧光发射和光漂白,其维持光盘表面波。 II。 实验

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摘要

Photonic crystal (PC)-enhanced fluorescence has been proposed as a novel tool for early disease detection in liquid biopsy. Photobleaching of the emitters has never been deeply investigated, although its cross section is expected to increase because of the large field intensity enhancement in PC. Herein, we report on the experimental investigation of the anisotropic effects arising when fluorescence excitation and emission are coupled to differently polarized modes of the same PC structure. In particular, we experimentally characterized the anisotropic photobleaching taking place during the operation of one-dimensional PC (1DPC) biosensors sustaining Bloch surface waves (BSW) at their truncation edge. The experimental results are compared to the description provided by our theoretical model reported in a twin article. We demonstrate experimentally that photobleaching affects the response of a cancer biomarkers' detection assay and propose a procedure to compensate for it. Moreover, we describe the experimental use of BSW-coupled fluorescence and of the strong localization of the BSW at the 1DPC surface to selectively probe the rotational diffusion kinetics of proteins bound at the 1DPC surface with high spatial resolution and for different binding strengths.
机译:光子晶体(PC) - 鉴别荧光已被提出为液检中早期疾病检测的新型工具。尽管预计其横截面,但由于PC中的大场强增强,因此对发射器的光漂白从未被调查过。在此,我们报告当荧光激发和发射耦合到相同PC结构的不同极化模式时产生的各向异性效应的实验研究。特别地,我们在实验地表征在其截断边缘处的一维PC(1DPC)生物传感器(BSW)的一维PC(1DPC)生物传感器的操作期间进行的各向异性光漂白。将实验结果与我们在双文章中报告的理论模型提供的描述进行了比较。我们实际证明光漂白会影响癌症生物标志物检测试验的响应,并提出一种弥补它的程序。此外,我们描述了BSW耦合荧光和BSW的强局部化在1DPC表面的实验用途,以选择性地探测在1DPC表面上结合的蛋白质的旋转扩散动力学,具有高空间分辨率和不同的结合强度。

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