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Biosensing with One Dimensional Photonic Bandgap Structure

机译:具有一维光子带隙结构的生物传感

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The optical properties of photonic bandgap (PBG) structures are highly sensitive to the geometry and refractive index. This makes PBG structures a good host for sensor applications. The binding of target species inside the PBG structure changes the refractive index of the material, which can be detected by monitoring the optical response of the device. One-dimensional PBG biosensors based on porous silicon (PSi) have been fabricated. The device is a microcavity, made of a symmetry breaking PSi layer (defect layer) inserted between two PSi Bragg mirrors. Narrow resonances are introduced in the photoluminescence and reflectance spectra. The large internal surface of the sensor is functionalized for the capture of target biological materials. When the sensor is exposed to the target, binding to the internal surface increases the effective optical thickness of the microcavity and thus causes a red shift of the optical spectrum. The sensor's sensitivity is determined by the morphology and geometry of the device. We will present the details of the materials science, sensor fabrication and optimization, and also describe experiments performed with biological targets.
机译:光子带隙(PBG)结构的光学性质对几何和折射率非常敏感。这使得PBG为传感器应用构造出良好的主机。在PBG结构内部的靶种质的结合改变了材料的折射率,这可以通过监测装置的光学响应来检测。基于多孔硅(PSI)的一维PBG生物传感器已经制造。该器件是一种微腔,由打开两个PSI布拉格镜之间插入的对称性PSI层(缺陷层)制成。在光致发光和反射光谱中引入窄的共振。传感器的大型内表面用于捕获目标生物材料。当传感器暴露于目标时,与内表面的结合增加了微腔的有效光学厚度,从而导致光谱的红色移位。传感器的灵敏度由设备的形态和几何确定决定。我们将介绍材料科学,传感器制造和优化的细节,还描述了用生物学靶标进行的实验。

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