Lin Chen-Fu, Lee Gwo-Bin, Wang Chih-Hao, Lee Huei-Huang, Liao Wei-Yin, Chou Tse-Chuan
Department of Engineering Science, National Cheng Kung University, Tainan, Taiwan.
Biosens Bioelectron. 2006 Feb 15;21(8):1468-75. doi: 10.1016/j.bios.2005.06.005. Epub 2005 Aug 11.
This paper presents a microfluidic chip capable of performing precise continuous pH measurements in an automatic mode. The chip is fabricated using micro-electro-mechanical-systems (MEMS)-based techniques and incorporates polydimethylsiloxane (PDMS) microstructures, pH-sensing electrodes and pneumatic fluid-control devices. Through its enhanced microchannel design and use of pneumatic fluid-control devices, the microfluidic chip reduces the dead volume of the sample and increases the pumping rate. The maximum pumping rate of the developed micro-pump is 28 microL/min at an air pressure of 10 psi and a driving frequency of 10 Hz. The total sample volume consumed in each sensing operation is just 0.515 microL. As a result, the developed chip reduces the sample volume compared to conventional large-scale pH-sensing systems. The microfluidic chip employs the electrochemical sensing method to conduct precise pH level measurements. The sensing electrodes are fabricated by sputtering a layer of SiO(2)-LiO(2)-BaO-TiO(2)-La(2)O(3) (SLBTLO) onto platinum (Pt) electrodes and the pH value of the sample is evaluated by measuring the potential difference between the sensing electrodes and a reference electrode. Additionally, the integration of the microfluidic chip with a pneumatic fluid-control device facilitates automatic sample injection and a continuous sensing operation. The developed system provides a valuable tool with which to examine pH values in a wide range of biomedical and industrial applications.
本文介绍了一种能够以自动模式进行精确连续pH测量的微流控芯片。该芯片采用基于微机电系统(MEMS)的技术制造,集成了聚二甲基硅氧烷(PDMS)微结构、pH传感电极和气动流体控制装置。通过其改进的微通道设计和气动流体控制装置的使用,微流控芯片减少了样品的死体积并提高了泵送速率。在气压为10 psi和驱动频率为10 Hz时,所开发的微型泵的最大泵送速率为28 μL/min。每次传感操作消耗的总样品体积仅为0.515 μL。因此,与传统的大规模pH传感系统相比,所开发的芯片减少了样品体积。微流控芯片采用电化学传感方法进行精确的pH值测量。传感电极是通过在铂(Pt)电极上溅射一层SiO(2)-LiO(2)-BaO-TiO(2)-La(2)O(3)(SLBTLO)制成的,样品的pH值通过测量传感电极和参比电极之间的电位差来评估。此外,微流控芯片与气动流体控制装置的集成便于自动进样和连续传感操作。所开发的系统为在广泛的生物医学和工业应用中检测pH值提供了一个有价值的工具。