首页> 外文会议>Instrumentation and Measurement Technology Conference, 2005. IMTC 2005. Proceedings of the IEEE >Glucose Oxidase (GOD)-Coupled Amperometric Microsensor with Integrated Electrochemical Actuation System
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Glucose Oxidase (GOD)-Coupled Amperometric Microsensor with Integrated Electrochemical Actuation System

机译:葡萄糖氧化酶(GOD)耦合的集成电化学驱动系统的安培微传感器

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Recent developments for biosensors have been mainly focused on miniaturization and exploratory use of new materials. It should be emphasized that the absence of a novel "in-situ self-calibration/diagnosis technique" that is not connected to an external apparatus is a key obstacle to the realization of a biosensor for continuous use with minimum attendance. In order to address this issue, a novel solid-state glucose oxidase-coupled amperometric biosensor with integrated electrochemical actuation system has been designed and validated. There are two key components of the proposed glucose biosensor: solid-state GOD-coupled thin-lm amperometric sensing element andO2depleting/saturating built-in electrochemical actuator. The actuator can be used to accomplish in-situ 1-point self-calibration by depleting O2(i.e., by simulating glucose-free environment). Also, it can be used at the same time to extend the proposed sensor's linear detection range by in ating O2(i.e., by enhancing glucose sensitivity). A prototype sensor was fabricated and a series of lab experiments was conducted. Collected data assures that the proposed sensor effectively establishes the zero calibration point and signi cantly enhances its measurement sensitivity and con dence.
机译:生物传感器的最新发展主要集中在新材料的小型化和探索性使用上。应该强调的是,缺少没有连接到外部设备的新颖的“原位自校准/诊断技术”是实现以最少的出席而连续使用的生物传感器的主要障碍。为了解决该问题,已经设计并验证了具有集成电化学致动系统的新型固态葡萄糖氧化酶偶联的安培生物传感器。提出的葡萄糖生物传感器有两个关键组成部分:固态GOD耦合的薄膜安培传感元件和O 2 耗尽/饱和内置电化学致动器。该执行器可以通过消耗O 2 (即通过模拟无葡萄糖的环境)来完成原位1点自校准。而且,它可以同时用于通过添加O 2 (即通过增强葡萄糖敏感性)来扩展建议的传感器的线性检测范围。制造了原型传感器,并进行了一系列实验室实验。收集的数据可确保所提出的传感器有效地建立零校准点,并显着提高其测量灵敏度和置信度。

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