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Nanoporous waveguide sensor with optimized nanoarchitectures for highly sensitive label-free biosensing

机译:具有优化的纳米结构的纳米多孔波导传感器,可实现高度灵敏的无标记生物传感

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摘要

Label-free optical biosensors have attracted much attention, and nanoporous metal-oxide membranes with uniform pore structure and diameter are promising candidates for platforms of label-free optical biosensors. However, development of such sensors with high sensitivity still remains challenging. In this paper, we report on the remarkably enhanced sensitivity of a label-free nanoporous optical waveguide (NPWG) sensor composed of a porous anodic alumina (PAA) waveguiding film and an aluminum cladding film. The enhanced sensitivity was achieved by engineering nanostructures and tuning optical properties of the PAA film. Careful tuning of the porosity, pore density, thickness, and refractive index of the PAA film could significantly improve the sensitivity of the NPWG sensor toward adsorption of bovine serum albumin (BSA) onto the PAA surface, and the optimized sensor responded to the adsorption of BSA with an extraordinarily large red shift (>300 nm) of a waveguide mode due to the large adsorption capacity of the PAA film and the inherently high sensitivity of the waveguide mode. The Fresnel calculations suggested that the potential sensitivity of the NPWG sensor was much higher than that of the conventional surface plasmon resonance (SPR) sensors.
机译:无标签光学生物传感器引起了广泛的关注,并且具有均匀孔结构和直径的纳米多孔金属氧化物膜是无标签光学生物传感器平台的有希望的候选者。但是,开发具有高灵敏度的这种传感器仍然具有挑战性。在本文中,我们报告了由多孔阳极氧化铝(PAA)波导膜和铝覆层膜组成的无标签纳米多孔光波导(NPWG)传感器的灵敏度显着提高。通过工程化纳米结构和调整PAA薄膜的光学性能,可以提高灵敏度。仔细调节PAA膜的孔隙率,孔密度,厚度和折射率可以显着提高NPWG传感器对牛血清白蛋白(BSA)吸附到PAA表面的敏感性,并且优化的传感器对PAA的吸附有响应由于PAA膜的大吸附能力和固有的高灵敏度的波导模式,BSA具有非常大的波导模式红移(> 300 nm)。菲涅耳计算表明,NPWG传感器的电势灵敏度远高于常规表面等离振子共振(SPR)传感器。

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