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用于微流控设备的聚合物光学氧传感器的图案化、集成与表征

Patterning, integration and characterisation of polymer optical oxygen sensors for microfluidic devices.

作者信息

Nock Volker, Blaikie Richard J, David Tim

机构信息

MacDiarmid Institute for Advanced Materials and Nanotechnology, Department of Electrical and Computer Engineering, University of Canterbury, Private Bag 4800, Christchurch, New Zealand.

出版信息

Lab Chip. 2008 Aug;8(8):1300-7. doi: 10.1039/b801879k. Epub 2008 Jun 23.

DOI:10.1039/b801879k
PMID:18651072
Abstract

This paper describes a process for the layer-by-layer fabrication and integration of luminescent dye-based optical oxygen sensors into microfluidic devices. Application of oxygen-sensitive platinum(ii) octaethylporphyrin ketone fluorescent dye dissolved in polystyrene onto glass substrates by spin-coating was studied. Soft lithography with polydimethylsiloxane (PDMS) stamps and reactive ion etching in oxygen plasma were used to produce sensor patterns with a minimum feature size of 25 microm. Sensors patterns were integrated into a PDMS microfluidic device by plasma bonding. No degradation of the sensor response as a result of the lithography and pattern-transfer processes was detected. Gaseous and dissolved oxygen (DO) detection was characterised using fluorescence microscopy. The intensity signal ratio of the sensor films was found to increase almost two-fold from 3.6 to 6.8 by reducing film thickness from 1.3 microm to 0.6 microm. Calibration of DO measurement showed linear Stern-Volmer behaviour that was constant for flow rates from 0.5 to 2 mL min(-1). The calibrated sensors were subsequently used to demonstrate laterally resolved detection of oxygen inside a microfluidic channel. The fabrication process provides a novel, easy to use method for the repeatable integration of optical oxygen sensors into cell-culture and lab-on-a-chip devices.

摘要

本文描述了一种将基于发光染料的光学氧传感器逐层制造并集成到微流控装置中的工艺。研究了通过旋涂将溶解在聚苯乙烯中的氧敏铂(II)八乙基卟啉酮荧光染料施加到玻璃基板上。使用聚二甲基硅氧烷(PDMS)印章进行软光刻,并在氧等离子体中进行反应离子蚀刻,以制作最小特征尺寸为25微米的传感器图案。通过等离子体键合将传感器图案集成到PDMS微流控装置中。未检测到光刻和图案转移过程导致传感器响应下降。使用荧光显微镜对气态和溶解氧(DO)检测进行了表征。通过将膜厚度从1.3微米减小到0.6微米,发现传感器膜的强度信号比从3.6增加到6.8,几乎增加了两倍。DO测量的校准显示出线性斯特恩-沃尔默行为,对于0.5至2 mL min(-1)的流速是恒定的。随后使用校准后的传感器展示了微流控通道内氧的横向分辨检测。该制造工艺为将光学氧传感器可重复集成到细胞培养和芯片实验室装置中提供了一种新颖、易于使用的方法。

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