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微流控芯片中的三维马赫-曾德尔干涉仪用于空间分辨的无标记检测。

Three-dimensional Mach-Zehnder interferometer in a microfluidic chip for spatially-resolved label-free detection.

机构信息

Istituto di Fotonica e Nanotecnologie-CNR, Dipartimento di Fisica-Politecnico di Milano, Piazza L. da Vinci, 32, 20133, Milano, Italy.

出版信息

Lab Chip. 2010 May 7;10(9):1167-73. doi: 10.1039/b920062b. Epub 2010 Feb 9.

Abstract

Ultrafast laser writing of waveguides in glasses is a very flexible and simple method for direct on-chip integration of photonic devices. In this work we present a monolithic optofluidic device in fused silica providing label-free and spatially-resolved sensing in a microfluidic channel. A Mach-Zehnder interferometer is inscribed with the sensing arm orthogonally crossing the microfluidic channel and the reference arm passing over it. The interferometer is integrated either with a microchannel fabricated by femtosecond laser technology or into a commercial lab-on-chip for capillary electrophoresis. The device layout, made possible by the unique three-dimensional capabilities of the technique, enables label-free sensing of samples flowing in the microchannel with spatial resolution of about 10 microm and limit of detection down to 10(-4) RIU.

摘要

超快激光在玻璃中写入波导是一种非常灵活和简单的方法,可用于直接在芯片上集成光子器件。在这项工作中,我们展示了一种在熔融石英中单片的光流控装置,可在微流道中提供无标记和空间分辨的传感。马赫-曾德尔干涉仪通过正交于微流道的传感臂和经过其上的参考臂进行刻写。干涉仪集成在飞秒激光技术制造的微通道中或集成在用于毛细管电泳的商业片上实验室中。该器件布局通过该技术独特的三维能力成为可能,可实现对微通道中流动样品的无标记传感,空间分辨率约为 10 微米,检测限低至 10^(-4) RIU。

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