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基于场效应晶体管传感器阵列在液体介质中对Cr(III)和Cr(VI)离子的多重超灵敏检测

Multiplexed Ultra-Sensitive Detection of Cr(III) and Cr(VI) Ion by FET Sensor Array in a Liquid Medium.

作者信息

Shahim Suman, Sukesan Revathi, Sarangadharan Indu, Wang Yu-Lin

机构信息

Institute of Nano Engineering and Microsystems, National Tsing Hua University, Hsinchu 300, Taiwan.

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu 300, Taiwan.

出版信息

Sensors (Basel). 2019 Apr 26;19(9):1969. doi: 10.3390/s19091969.

Abstract

Chromium, one of the top five toxic heavy metals ranked according to significance in public health by WHO, exists as Cr(III) which is naturally occurring or Cr(VI) which is anthropogenic in origin. The EPA specifies the maximum contaminant level in drinking water to be 10 M or 0.1 mg/L or 100 ppb for the total dissolved Cr. To ensure the water consumed by the population has these pollutants below the safe threshold, this report demonstrates a field effect transistor (FET) based sensor design incorporating a highly target specific ion-selective membrane combined with extended gate technology which manifests sensitivity exceeding the Nernst limit aided by the high field effect in the short gap region of extended gate technology. Characterization and repeated testing of the portable device revealed a commendable calibration sensitivity of 99 mV/log [Cr] and 71 mV/log [Cr] for Cr(III) and Cr(VI) respectively, well surpassing the Nernst limits of sensitivity and offering a detection limit lower than ion-selective electrodes (10 M), and comparable to the expensive benchtop laboratory instrument, ICP-MS. This report presents a robust, easy to fabricate, economic and efficient handheld biosensor to detect the chromium in a liquid sample whether it exists as Cr(III) or Cr(VI).

摘要

铬是世界卫生组织根据对公众健康的重要性排名的五大有毒重金属之一,以天然存在的三价铬(Cr(III))或人为来源的六价铬(Cr(VI))形式存在。美国环境保护局规定饮用水中总溶解铬的最大污染物水平为10 μM或0.1 mg/L或100 ppb。为确保民众饮用的水中这些污染物低于安全阈值,本报告展示了一种基于场效应晶体管(FET)的传感器设计,该设计结合了高度靶向特异性的离子选择性膜和扩展栅技术,在扩展栅技术的短间隙区域中,借助高场效应,其灵敏度超过了能斯特极限。对该便携式设备的表征和反复测试表明,对于Cr(III)和Cr(VI),其校准灵敏度分别为99 mV/log [Cr]和71 mV/log [Cr],令人称赞,远远超过了能斯特灵敏度极限,检测限低于离子选择性电极(10 μM),且与昂贵的台式实验室仪器电感耦合等离子体质谱仪(ICP-MS)相当。本报告介绍了一种坚固耐用、易于制造、经济高效的手持式生物传感器,用于检测液体样品中无论是以Cr(III)还是Cr(VI)形式存在的铬。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/698f/6539384/8652d3ef4b24/sensors-19-01969-g001a.jpg

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