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首页> 外文期刊>ACS applied materials & interfaces >Label-Free Optical Biochemical Sensors via Liquid-Cladding-Induced Modulation of Waveguide Modes
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Label-Free Optical Biochemical Sensors via Liquid-Cladding-Induced Modulation of Waveguide Modes

机译:通过液体包层诱导的波导模式调制无标记的光学生物化学传感器

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We demonstrated modulation of the waveguide mode mismatch via liquid cladding of the controllable refractive index for label-free quantitative detection of concentration of chemical or biological substances. A multi mode optical fiber with its core exposed was used as the sensor head with the suitable chemical modification of its surface. Injected analyte liquid itself formed the liquid cladding for the waveguide. We found that modulation of the concentration of analyte injected enables a degree of the waveguide mode mismatch to be controlled, resulting in sensitive change in optical power transmission, which was utilized for its real-time quantitative assay. We applied the device to quantitating concentration of glycerol and bovine serum albumin (BSA) solutions. We obtained experimentally the limit of detection (LOD) of glycerol concentration, 0.001% (volume ratio), corresponding to the resolvable index resolution of similar to 1.02 x 10(-6) RIU (refractive index unit). The presented sensors also exhibited reasonably good reproducibility. In BSA detection, the sensor device response was sensitive to change in the refractive indices not only of liquid bulk but also of layers just above the sensing surface with higher sensitivity, providing the LOD experimentally as similar to 3.7 ng/mL (mass coverage of similar to 30 pg/mm(2)). A theoretical model was also presented to invoke both mode mismatch modulation and evanescent field absorption for understanding of the transmission change, offering a theoretical background for designing the sensor head structure for a given analyte. Interestingly, the device sensing length played little role in the important sensor characteristics such as sensitivity, unlike most of the waveguide-based sensors. This unraveled the possibility of realizing a highly simple structured label-free sensor for point-of-care testing in a real-time manner via an optical waveguide with liquid cladding. This required neither metal nor dielectric coating but still produced sensitivity comparable to those of other types of label-free sensors such as plasmonic fiber ones.
机译:我们证明了通过液体包层的可控折射率的液体包层来调节用于无标记的化学物质或生物物质浓度的无标记定量检测。具有核心暴露的多模光纤用作传感器头,其表面的合适化学改性。注射分析物液体本身形成了波导的液体包层。我们发现注射的分析物浓度的调节使得能够控制的波导模式失配,导致光学动力传递的敏感变化,其用于其实时定量测定。我们将该装置应用于定量甘油和牛血清白蛋白(BSA)溶液的浓度。我们通过实验获得了甘油浓度的检测(LOD)的极限,0.001%(体积比),对应于可分辨率指数分辨率,类似于1.02×10(-6)Riu(折射率单元)。所呈现的传感器也表现出相当好的再现性。在BSA检测中,传感器装置响应不仅对液体堆积的折射率变化而且在感应表面上方的层的变化敏感,而且具有更高的灵敏度,可以在实验上提供类似于3.7ng / ml的床位(相似的质量覆盖范围到30 pg / mm(2))。还提出了理论模型来调用模式不匹配和渐逝场吸收以了解传输变化,为给定分析物设计用于设计传感器头结构的理论背景。有趣的是,与大多数基于波导的传感器不同,设备感测长度在重要的传感器特性中起很小的作用。这解开了实现高度简单的结构化标签传感器的可能性,以通过具有液体包层的光学波导以实时方式进行护理点测试。这既不需要金属也不需要介电涂层,但仍然产生与其他类型的无标记传感器(例如等离子体纤维)相当的敏感性。

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