In-line characterization and identification of micro-droplets on-chip

E. Weber, D. Puchberger-Enengl, F. Keplinger, M. Vellekoop
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引用次数: 5

Abstract

Abstract We present an integrated optofluidic sensor system for in-line characterization of micro-droplets. The device provides information about the droplet generation frequency, the droplet volume, and the content of the droplet. Due to its simplicity this principle can easily be implemented with other microfluidic components on one and the same device. The sensor is based on total internal reflection phenomena. Droplets are pushed through a microfluidic channel which is hit by slightly diverging monochromatic light. At the solid-liquid interface parts of the rays experience total internal reflection while another part is transmitted. The ratio of reflected to transmitted light depends on the refractive index of the solution. Both signals are recorded simultaneously and provide a very stable output signal for the droplet characterization. With the proposed system passing droplets were counted up to 320 droplets per second and droplets with different volumes could be discriminated. In a final experiment droplets with different amounts of dissolved CaCl2 were distinguished based on their reflected and transmitted light pattern. This principle can be applied for the detection of any molecules in microdroplets which significantly influence the refractive index of the buffer solution.
片上微液滴的在线表征与识别
摘要提出了一种用于微液滴在线表征的集成式光流传感器系统。该装置提供有关液滴产生频率、液滴体积和液滴含量的信息。由于其简单性,该原理可以很容易地与同一设备上的其他微流体元件一起实现。该传感器基于全内反射现象。液滴被推过微流控通道,微流控通道被轻微发散的单色光照射。在固液界面处,部分光线经历全内反射,而另一部分则被透射出去。反射光与透射光的比率取决于溶液的折射率。两种信号同时记录,为液滴表征提供了非常稳定的输出信号。该系统可实现每秒320个液滴的计数,并能区分不同体积的液滴。在最后的实验中,根据不同溶解量的CaCl2的反射和透射光模式来区分它们。该原理可用于检测微滴中对缓冲溶液折射率有显著影响的任何分子。
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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