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Sensitive Detection of Small Particles in Fluids Using Optical Fiber Tip with Dielectrophoresis

机译:使用介电泳的光纤尖端灵敏地检测流体中的小颗粒

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摘要

This work presents using a tapered fiber tip coated with thin metallic film to detect small particles in water with high sensitivity. When an AC voltage applied to the Ti/Al coated fiber tip and indium tin oxide (ITO) substrate, a gradient electric field at the fiber tip induced attractive/repulsive force to suspended small particles due to the frequency-dependent dielectrophoresis (DEP) effect. Such DEP force greatly enhanced the concentration of the small particles near the tip. The increase of the local concentration also increased the scattering of surface plasmon wave near the fiber tip. Combined both DEP effect and scattering optical near-field, we show the detection limit of the concentration for 1.36 μm polystyrene beads can be down to 1 particle/mL. The detection limit of the Escherichia coli (E. coli) bacteria was 20 CFU/mL. The fiber tip sensor takes advantages of ultrasmall volume, label-free and simple detection system.
机译:这项工作提出了使用涂有金属薄膜的锥形纤维尖端,以高灵敏度检测水中的小颗粒。当将交流电压施加到涂有Ti / Al的纤维尖端和铟锡氧化物(ITO)基板上时,由于频率依赖性介电电泳(DEP)效应,纤维尖端处的梯度电场对悬浮的小颗粒产生了吸引力/排斥力。这种DEP力大大提高了尖端附近小颗粒的浓度。局部浓度的增加也增加了表面等离激元波在纤维尖端附近的散射。结合DEP效应和散射光学近场,我们显示1.36μm聚苯乙烯珠的浓度检测极限可以降至1粒子/ mL。大肠杆菌(E. coli)细菌的检出限为20 CFU / mL。光纤尖端传感器具有超小体积,无标签和简单的检测系统的优势。

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