Zhang Xiaowei, Han Yanchao, Li Jing, Zhang Libing, Jia Xiaofang, Wang Erkang
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences , Changchun, Jilin, 130022, China.
Anal Chem. 2014 Feb 4;86(3):1380-4. doi: 10.1021/ac403312f. Epub 2014 Jan 16.
In this work, a novel and universal ion sensing platform was presented, which enables the visual detection of various ions with high sensitivity and selectivity. Coaxial potential signals (millivolt-scale) of the sample from the self-referencing (SR) ion selective chip can be transferred into the ad620-based amplifier with an output of volt-scale potentials. The amplified voltage is high enough to drive a light emitting diode (LED), which can be used as an amplifier and indicator to report the sample information. With this double amplification device (light emitting diode-based self-referencing-ion selective field-effect transistor, LED-SR-ISFET), a tiny change of the sample concentration can be observed with a distinguishable variation of LED brightness by visual inspection. This LED-based luminescent platform provided a facile, low-cost, and rapid sensing strategy without the need of additional expensive chemiluminescence reagent and instruments. Moreover, the SR mode also endows this device excellent stability and reliability. With this innovative design, sensitive determination of K(+), H(+), and Cl(-) by the naked eye was achieved. It should also be noticed that this sensing strategy can easily be extended to other ions (or molecules) by simply integrating the corresponding ion (or molecule) selective electrode.
在这项工作中,提出了一种新颖且通用的离子传感平台,该平台能够以高灵敏度和选择性对各种离子进行可视化检测。来自自参考(SR)离子选择性芯片的样品同轴电位信号(毫伏级)可以传输到基于ad620的放大器中,输出为伏特级电位。放大后的电压足以驱动发光二极管(LED),该发光二极管可用作放大器和指示器来报告样品信息。利用这种双放大装置(基于发光二极管的自参考离子选择性场效应晶体管,LED-SR-ISFET),通过目视检查可以观察到样品浓度的微小变化,并伴随着LED亮度的明显变化。这种基于LED的发光平台提供了一种简便、低成本且快速的传感策略,无需额外昂贵的化学发光试剂和仪器。此外,SR模式还赋予该装置出色的稳定性和可靠性。通过这种创新设计,实现了用肉眼对K(+)、H(+)和Cl(-)的灵敏测定。还应注意的是,通过简单地集成相应的离子(或分子)选择性电极,这种传感策略可以很容易地扩展到其他离子(或分子)。