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电化学生物传感器与纺织线的结合:一种用于测定自来水中苯酚的微流控装置。

Combination of electrochemical biosensor and textile threads: A microfluidic device for phenol determination in tap water.

机构信息

Laboratório de Sensores Eletroquímicos (LabSensE), Departamento de Química, Universidade Federal do Paraná (UFPR), CEP 81.531-980 Curitiba, PR, Brazil.

Campus Paranavaí, Instituto Federal do Paraná, 87703-536 Paranavaí, PR, Brazil.

出版信息

Biosens Bioelectron. 2018 Jan 15;99:382-388. doi: 10.1016/j.bios.2017.07.070. Epub 2017 Jul 29.

Abstract

Microfluidic devices constructed using low cost materials presents as alternative for conventional flow analysis systems because they provide advantages as low consumption of reagents and samples, high speed of analysis, possibility of portability and the easiness of construction and maintenance. Herein, is described for the first time the use of an electrochemical biosensor for phenol detection combined with a very simple and efficient microfluidic device based on commercial textile threads. Taking advantages of capillary phenomena and gravity forces, the solution transportation is promoted without any external forces or injection pump. Screen printed electrodes were modified with carbon nanotubes/gold nanoparticles followed by covalent binding of tyrosinase. After the biosensor electrochemical characterization by cyclic voltammetry technique, the optimization of relevant parameters such as pH, potential of detection and linear range for the biosensor performance was carried out; the system was evaluated for analytical phenol detection presenting limit of detection and limit of quantification 2.94nmolL and 8.92nmolL respectively. The proposed system was applied on phenol addition and recovery studies in drinking water, obtaining recoveries rates between 90% and 110%.

摘要

使用低成本材料构建的微流控装置为传统的流动分析系统提供了替代方案,因为它们具有以下优点:试剂和样品消耗量低、分析速度快、具有便携性以及易于构建和维护。本文首次描述了将电化学生物传感器用于检测苯酚与一种非常简单高效的基于商业纺织线的微流控装置相结合的应用。利用毛细现象和重力作用,无需外部力量或注射泵即可促进溶液的输送。通过循环伏安技术对丝网印刷电极进行了修饰,采用碳纳米管/金纳米粒子,然后通过共价键合固定酪氨酸酶。对生物传感器进行电化学特性分析后,对相关参数(如 pH 值、检测电位和线性范围)进行了优化,以实现生物传感器的性能;该系统用于分析苯酚检测,检测限和定量限分别为 2.94nmolL 和 8.92nmolL。该系统应用于饮用水中苯酚的添加和回收研究,回收率在 90%到 110%之间。

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