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Ultrasensitive Detection of Heavy Metal Ions with Scalable Singular Phase Thin Film Optical Coatings

机译:使用可扩展的奇异相薄膜光学镀膜超灵敏检测重金属离子

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摘要

Identification of spectroscopically silent heavy-metal ions in environmental and bio-analytical samples has gained immense importance. Lowering the limit of detection of these ions at low concentrations is crucial for biomedicine and food safety applications. Optical chemical sensors have shown great potential in improving the sensing solutions for heavy-metal ions because of their fast and label-free detection capabilities. However, achieving high sensitivity without compromising on scalability and simplicity is challenging. Here, we experimentally demonstrate the detection of heavy metal ions at ultralow concentrations using lithography-free scalable thin film optical coatings that show singular behavior of phase of light at the point-of-darkness. Since the phase-sensitive optical techniques have shown superior sensitivity over traditional sensing techniques based on spectroscopy, we use this extreme phase change to detect zinc ions concentration down to femtomolar. In particular, it allows us to monitor very small changes in refractive index due to the real-time binding of zinc ions on a poly (lactic-co-glycolic acid) functionalized sensor surface. This cost-effective extreme sensitivity sensing platform can be used for the label-free detection of various heavy metal ions by properly functionalizing the sensor surface.
机译:在环境和生物分析样品中鉴定光谱沉默的重金属离子已经变得非常重要。降低这些离子在低浓度下的检测限对于生物医学和食品安全应用至关重要。光学化学传感器由于其快速和无标记的检测能力,在改进重金属离子传感解决方案方面显示出巨大的潜力。然而,在不影响可扩展性和简单性的情况下实现高灵敏度是具有挑战性的。在这里,我们通过实验演示了使用无光刻可伸缩薄膜光学涂层在超低浓度下检测重金属离子的方法,该涂层在暗点处显示出光相的奇异行为。由于相敏光学技术显示出优于基于光谱学的传统传感技术的灵敏度,因此我们利用这种极端的相变来检测低至飞摩尔的锌离子浓度。特别是,由于锌离子在聚(乳酸-乙醇酸共聚物-乙醇酸)功能化传感器表面上的实时结合,它使我们能够监测折射率的非常小的变化。这种具有成本效益的极高灵敏度传感平台可以通过对传感器表面进行适当的功能化来无标记地检测各种重金属离子。

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