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Pesticide Determination by Enzymatic Inhibition and Amperometric Detection in a Low-Temperature Cofired Ceramics Microsystem

机译:低温共烧陶瓷微系统中酶抑制和电流检测法测定农药

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摘要

Among the several fabrication techniques used to constructmicroflow systems, the low-temperature cofired ceramics (LTCC) technology, taking advantage of its multilayer approach, is one of the most versatile ones. It permits the integration of several unitary operations of an analytical process in a modular or monolithic way. Moreover, due to its perfect compatibility with screen-printing techniques, it also permits the integration of electronic components used to control the whole system setup. In this work the design, construction, and evaluation of a miniaturized analyzer for pesticide determination that integrates a pretreatment stage, based on two mixers or reactors, and an amperometric detection system to measure the product of an enzymatic inhibition reaction are presented. The detection system was monolithically integrated in the microfluidic platform, and it consisted of a screen-printed reference electrode and two platinum sheets, acting as auxiliary and working electrodes, which were embedded within the ceramic structure. The miniaturized system was characterized and successfully evaluated by determining carbofuran at the nanomolar level.
机译:在用于构造微流系统的几种制造技术中,利用多层方法的低温共烧陶瓷(LTCC)技术是用途最广泛的技术之一。它允许以模块化或整体的方式集成分析过程的多个单元操作。此外,由于与丝网印刷技术的完美兼容性,它还允许集成用于控制整个系统设置的电子组件。在这项工作中,提出了基于两个混合器或反应器的,集成了预处理阶段的农药测定用小型分析仪的设计,构造和评估,以及用于测量酶抑制反应产物的安培检测系统。该检测系统单片集成在微流体平台中,由丝网印刷的参比电极和两个铂片组成,分别作为辅助电极和工作电极,并嵌入陶瓷结构中。通过测定纳摩尔级的呋喃丹,对小型化系统进行了表征并成功进行了评估。

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