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On-Chip Real-Time Chemical Sensors Based on Water-Immersion-Objective Pumped Whispering-Gallery-Mode Microdisk Laser

机译:基于水浸式客观泵送耳语画廊模式微芯片激光的片上实时化学传感器

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摘要

Optical whispering-gallery-mode (WGM) microresonator-based sensors with high sensitivity and low detection limit down to single unlabeled biomolecules show high potential for disease diagnosis and clinical application. However, most WGM microresonator-based sensors, which are packed in a microfluidic cell, are a “closed„ sensing configuration that prevents changing and sensing the surrounding liquid refractive index (RI) of the microresonator immediately. Here, we present an “open„ sensing configuration in which the WGM microdisk laser is directly covered by a water droplet and pumped by a water-immersion-objective (WIO). This allows monitoring the chemical reaction progress in the water droplet by tracking the laser wavelength. A proof-of-concept demonstration of chemical sensor is performed by observing the process of salt dissolution in water and diffusion of two droplets with different RI. This WIO pumped sensing configuration provides a path towards an on-chip chemical sensor for studying chemical reaction kinetics in real time.
机译:光学潜水站 - 模式(WGM)具有高灵敏度和低检测限额的基于微生物的传感器,下降到单个未标记的生物分子,显示出疾病诊断和临床应用的高潜力。然而,大多数基于WGM微生物的传感器包装在微流体细胞中,是一种“闭合”的感测配置,其防止立即改变和感测微谐振器的周围液体折射率(RI)。这里,我们提出了一种“开放”感测结构,其中WGM微仪激光直接被水滴覆盖并被水浸式目标(WIO)泵送。这允许通过跟踪激光波长来监测水滴中的化学反应进展。通过观察水溶液的盐溶解和两滴与不同Ri的扩散来进行化学传感器的概念证明。该WIO泵送的传感配置提供了一种朝向片上化学传感器的路径,用于实时研究化学反应动力学。

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