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批量微制造用于快速化学需氧量测量的微流控电化学传感器。

A batch microfabrication of a microfluidic electrochemical sensor for rapid chemical oxygen demand measurement.

机构信息

Faculty of Electrical Engineering and Computer Science, Ningbo University, Ningbo, 315211, P. R. China.

出版信息

Analyst. 2021 Mar 21;146(6):1956-1964. doi: 10.1039/d0an02133d. Epub 2021 Jan 26.

DOI:10.1039/d0an02133d
PMID:33496286
Abstract

Chemical oxygen demand (COD) is one of the key water quality parameters in environmental monitoring. However, fabricating a COD sensor with the characteristic of batch-processing and rapid measurement is always a challenging issue. This paper reports a microfluidic electrochemical sensor for the organic matter measurement based on advanced oxidization within a fixed microvolume detection chamber by a microfabrication technique/MEMS. By fabricating a silicon-based Ag/AgCl reference electrode and employing PbO as the working electrode with Pt as the counter electrode, we verified the superiority of the as-fabricated sensor by continuous potassium acid phthalate detection; an acceptable limit of detection (4.17 mg L-200 mg L), a low limit of detection (2.05 mg L), a desirable linearity (R = 0.982) and relative stability at different pH values and Cl concentrations was witnessed. Particularly, a shorter detection time (2 s) was witnessed for the as-proposed sensor compared with traditional organic matter measurement methods. Each sensing process takes only 2 seconds for sensing because a micro-cavity with a volume of 2.5 μL was fabricated and used as a detection pool. Moreover, as the sensor was fabricated by a mass-production technique, potential response consistency of multiple sensors was expected and was verified via a series of parallel experiments. In this paper, a miniaturized (8 mm × 10 mm), low-cost and reliable COD sensor was designed and fabricated by MEMS, and it provided a core sensor component for construction of an online water environment monitoring network to meet the substantial demand for COD sensors in the Internet of Things (IOT) era.

摘要

化学需氧量(COD)是环境监测中关键的水质参数之一。然而,制造具有批量处理和快速测量特征的 COD 传感器一直是一个具有挑战性的问题。本文报道了一种基于微流控电化学传感器的有机物质测量方法,该传感器采用微加工技术/MEMS 在固定的微体积检测室内通过先进的氧化作用进行测量。通过制造基于硅的 Ag/AgCl 参比电极,并采用 PbO 作为工作电极,Pt 作为对电极,我们通过连续的邻苯二甲酸氢钾检测验证了所制造传感器的优越性;可接受的检测限(4.17mg/L-200mg/L)、低检测限(2.05mg/L)、良好的线性度(R=0.982)和在不同 pH 值和 Cl 浓度下的相对稳定性。特别是,与传统的有机物测量方法相比,所提出的传感器具有更短的检测时间(2s)。由于制造了一个 2.5μL 体积的微腔用作检测池,因此每个传感过程仅需 2 秒。此外,由于传感器是通过批量生产技术制造的,因此可以预期多个传感器的潜在响应一致性,并通过一系列平行实验进行了验证。在本文中,通过 MEMS 设计和制造了一种小型化(8mm×10mm)、低成本和可靠的 COD 传感器,为构建在线水环境监测网络提供了核心传感器组件,以满足物联网(IoT)时代对 COD 传感器的大量需求。

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