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Investigation of the operating mechanism of a diffraction-based sensor

机译:基于衍射的传感器的工作机理研究

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In this work, we describe our recent efforts aimed at determining the mechanism of signal change for a diffraction-based sensor (DBS) system. The DBS detects analyte-binding events by monitoring the change in diffraction efficiency that takes place when analyte molecules adsorbs to target molecules that have been patterned onto a surface. The exact parameters that affect the intensity of the diffraction intensity are not immediately clear. In this work, it is hypothesized that the intensity of the diffraction signal depends both on the thickness of the diffraction grating and the refractive index of the analyte molecule. This hypothesis has been tested by preparing diffraction grating targets of well-defined thickness from polyelectrolyte multilayers. The index of refraction of the layers was also adjusted by incorporating charged Au nanoparticles into the diffraction grating structure. Results of these experiments are discussed in terms of simple models based on volume-phase holography.
机译:在这项工作中,我们描述了我们最近的工作,旨在确定基于衍射的传感器(DBS)系统的信号变化机制。 DBS通过监视分析物分子吸附到已在表面上形成图案的目标分子时发生的衍射效率变化来检测分析物结合事件。影响衍射强度强度的确切参数尚不清楚。在这项工作中,假设衍射信号的强度既取决于衍射光栅的厚度又取决于分析物分子的折射率。通过从聚电解质多层中制备厚度确定的衍射光栅靶,对这一假设进行了检验。还通过将带电的Au纳米颗粒结合到衍射光栅结构中来调节各层的折射率。这些实验的结果以基于体积相全息的简单模型进行了讨论。

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