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Innovative 2D-nanomaterial integrated fiber optic sensors for biochemical applications

机译:用于生化应用的创新型2D纳米材料集成光纤传感器

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We report our latest investigations on 2D-layered materials integrated fiber optic configurations for chemical and label-free biosensing applications. Due to the favorable combination of exceptionally high surface-to-volume ratio and excellent optical and biochemical properties, graphene oxide (GO) and black phosphorus (BP) were deposited on fiber grating device as the bio-photonic linking layer to provide the remarkable platform for light-matter interface and affinity binding interaction. We developed a novel in-situ layer-by-layer (i-LbL) deposition technique based on chemical-bonding associated with physical-adsorption for the deposition of 2D materials. This approach secured high-quality 2D materials deposition on cylindrical fiber with strong adhesion as well as a prospective thickness control. By taking advantage of i-LbL deposition, the unique optical tunable features and polarization-selective characteristics have been experimentally observed. Several 2D material integrated fiber optic sensors have been proposed for chemical and biochemical applications, such as GO-long period grating (GO-LPG) based Hemoglobin sensor, GO dual-peak LPG (GO-dLPG) based label-free immunosensor, and the first BP fiber optic chemical sensor based on BP-tilted fiber grating (BP-TFG). We believe that 2D material integrated fiber optic configurations open the path as highly sensitive bio-photonic platform for food safety, environmental monitoring, clinical diagnostics and biomedical applications.
机译:我们报告了针对化学和无标签生物传感应用的2D层材料集成光纤配置的最新研究。由于极高的表面体积比和优异的光学和生化特性的良好结合,氧化石墨烯(GO)和黑磷(BP)沉积在纤维光栅装置上作为生物光子连接层,从而提供了卓越的平台用于轻物质界面和亲和力结合相互作用。我们基于与化学吸附相关的化学键合开发了一种新颖的原位逐层(i-LbL)沉积技术,用于沉积2D材料。这种方法可确保在圆柱形纤维上沉积高质量2D材料,并具有很强的附着力以及预期的厚度控制。通过利用i-LbL沉积,已通过实验观察到了独特的光学可调特性和偏振选择特性。已经提出了几种用于化学和生化应用的集成2D材料的光纤传感器,例如基于GO长周期光栅(GO-LPG)的血红蛋白传感器,基于GO双峰LPG(GO-dLPG)的无标记免疫传感器,以及首款基于BP倾斜式光纤光栅(BP-TFG)的BP光纤化学传感器。我们相信,二维材料集成的光纤配置为食品安全,环境监测,临床诊断和生物医学应用提供了高度灵敏的生物光子平台,为我们开辟了道路。

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