Planar silicon nitride waveguides for biosensing.

A V Nabok, S Haron, A K Ray
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引用次数: 13

Abstract

The principles of attenuation of the light intensity due to multiple reflections are realised in a planar silicon oxide (SiO(2))silicon nitride (Si(3)N(4)) waveguiding structure for the purpose of developing optical biosensors with improved sensitivity. The analysis of the experimental data shows that the large difference in refractive indices of core and cladding layers gives rise to an increase in sensitivity by a factor of 3 over previously reported structures. Composite polyelectrolyte self-assembled thin films containing cyclo-tetra-chromotropylene as an indicator and enzymes glucose oxidase or urease were employed in the superstrate as a sensing membrane. Individual enzyme reactions as well as their inhibition by pesticides were studied by monitoring the intensity of light output from the planar waveguide. The results were compatible with those obtained by conventional ultraviolet-visible absorption spectroscopy. The instrument detection limit for Imidacloprid pesticide was found to be as low as 10 ppb in concentration.

用于生物传感的平面氮化硅波导。
为了开发具有更高灵敏度的光学生物传感器,在平面氧化硅(SiO(2))氮化硅(Si(3)N(4))波导结构中实现了多次反射引起的光强衰减原理。对实验数据的分析表明,芯层和包层折射率的巨大差异导致灵敏度比先前报道的结构提高了3倍。以环-四色三丙烯为指示剂,葡萄糖氧化酶或脲酶为传感膜的复合聚电解质自组装薄膜。通过监测平面波导的光输出强度,研究了单个酶反应及其对农药的抑制作用。结果与常规紫外-可见吸收光谱法一致。吡虫啉农药的仪器检出限低至10 ppb。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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