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Light Manipulation in Inhomogeneous Liquid Flow and Its Application in Biochemical Sensing

机译:非均匀液体中的光操纵及其在生化传感中的应用

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摘要

Light manipulation has always been the fundamental subject in the field of optics since centuries ago. Traditional optical devices are usually designed using glasses and other materials, such as semiconductors and metals. Optofluidics is the combination of microfluidics and optics, which brings a host of new advantages to conventional solid systems. The capabilities of light manipulation and biochemical sensing are inherent alongside the emergence of optofluidics. This new research area promotes advancements in optics, biology, and chemistry. The development of fast, accurate, low-cost, and small-sized biochemical micro-sensors is an urgent demand for real-time monitoring. However, the fluid flow in the on-chip sensor is usually non-uniformed, which is a new and emerging challenge for the accuracy of optical detection. It is significant to reveal the principle of light propagation in an inhomogeneous liquid flow and the interaction between biochemical samples and light in flowing liquids. In this review, we summarize the current state of optofluidic lab-on-a-chip techniques from the perspective of light modulation by the unique dynamic properties of fluid in heterogeneous media, such as diffusion, heat transfer, and centrifugation etc. Furthermore, this review introduces several novel photonic phenomena in an inhomogeneous liquid flow and demonstrates their application in biochemical sensing.
机译:自几个世纪以来,光操纵一直是光学领域的基本主题。传统的光学设备通常使用玻璃和其他材料(例如半导体和金属)进行设计。光电流体是微流体和光学的结合,为常规固体系统带来了许多新优势。光操纵和生化感测的功能与光流体学一起出现。这个新的研究领域促进了光学,生物学和化学领域的进步。快速,准确,低成本和小型生化微传感器的发展是实时监控的迫切需求。然而,片上传感器中的流体流动通常是不均匀的,这对于光学检测的准确性是一个新出现的挑战。揭示光在非均匀液体流中传播的原理以及生化样品与流动液体中的光之间的相互作用非常重要。在这篇综述中,我们从光调制的角度,通过异质介质中流体的独特动态特性(例如扩散,传热和离心等),总结了光流体芯片实验室技术的现状。综述介绍了非均匀液体流动中的几种新型光子现象,并论证了它们在生化传感中的应用。

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