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Microstructured Optical Waveguide-Based Endoscopic Probe Coated with Silica Submicron Particles

机译:二氧化硅亚微米颗粒涂层的微结构基于光波导的内窥镜探头

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摘要

Microstructured optical waveguides (MOW) are of great interest for chemical and biological sensing. Due to the high overlap between a guiding light mode and an analyte filling of one or several fiber capillaries, such systems are able to provide strong sensitivity with respect to variations in the refractive index and the thickness of filling materials. Here, we introduce a novel type of functionalized MOWs whose capillaries are coated by a layer-by-layer (LBL) approach, enabling the alternate deposition of silica particles (SiO2) at different diameters—300 nm, 420 nm, and 900 nm—and layers of poly(diallyldimethylammonium chloride) (PDDA). We demonstrate up to three covering bilayers consisting of 300-nm silica particles. Modifications in the MOW transmission spectrum induced by coating are measured and analyzed. The proposed technique of MOW functionalization allows one to reach novel sensing capabilities, including an increase in the effective sensing area and the provision of a convenient scaffold for the attachment of long molecules such as proteins.
机译:微结构光波导(MOW)对于化学和生物感测非常感兴趣。由于导光模式和一个或多个纤维毛细管的分析物填充之间的高度重叠,因此此类系统能够针对填充材料的折射率和厚度的变化提供强大的灵敏度。在这里,我们介绍了一种新型的功能化MOW,其毛细血管通过逐层(LBL)涂覆,可以交替沉积300nm,420nm和900nm不同直径的二氧化硅颗粒(SiO2)和聚(二烯丙基二甲基氯化铵)(PDDA)层。我们演示了由300 nm二氧化硅颗粒组成的最多三个覆盖双层。测量和分析了由涂层引起的MOW透射光谱的变化。拟议的MOW功能化技术允许人们达到新颖的传感能力,包括增加有效的传感面积并提供方便的支架来附着长分子(如蛋白质)。

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