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用于光学化学分析应用的微型无线智能标签。

Miniaturised wireless smart tag for optical chemical analysis applications.

机构信息

GoSense Wireless Ltd., Moorfield Road, Duxford, Cambridge CB22 4PP, UK.

出版信息

Talanta. 2014 Jan;118:375-81. doi: 10.1016/j.talanta.2013.10.033. Epub 2013 Oct 23.

Abstract

A novel miniaturised photometer has been developed as an ultra-portable and mobile analytical chemical instrument. The low-cost photometer presents a paradigm shift in mobile chemical sensor instrumentation because it is built around a contactless smart card format. The photometer tag is based on the radio-frequency identification (RFID) smart card system, which provides short-range wireless data and power transfer between the photometer and a proximal reader, and which allows the reader to also energise the photometer by near field electromagnetic induction. RFID is set to become a key enabling technology of the Internet-of-Things (IoT), hence devices such as the photometer described here will enable numerous mobile, wearable and vanguard chemical sensing applications in the emerging connected world. In the work presented here, we demonstrate the characterisation of a low-power RFID wireless sensor tag with an LED/photodiode-based photometric input. The performance of the wireless photometer has been tested through two different model analytical applications. The first is photometry in solution, where colour intensity as a function of dye concentration was measured. The second is an ion-selective optode system in which potassium ion concentrations were determined by using previously well characterised bulk optode membranes. The analytical performance of the wireless photometer smart tag is clearly demonstrated by these optical absorption-based analytical experiments, with excellent data agreement to a reference laboratory instrument.

摘要

一种新型微型分光光度计已被开发为超便携和移动分析化学仪器。这款低成本分光光度计在移动化学传感器仪器方面带来了范式转变,因为它是围绕非接触式智能卡格式构建的。光度计标签基于射频识别 (RFID) 智能卡系统,该系统在光度计和近端读取器之间提供短距离无线数据和电源传输,并允许读取器通过近场电磁感应为光度计供电。RFID 将成为物联网 (IoT) 的关键使能技术,因此,像这里描述的光度计这样的设备将在新兴的互联世界中实现众多移动、可穿戴和先锋化学传感应用。在目前的工作中,我们展示了一种基于 LED/光电二极管的光度学输入的低功耗 RFID 无线传感器标签的特性。通过两种不同的分析模型应用,对无线光度计的性能进行了测试。第一种是溶液中的光度法,测量了染料浓度与颜色强度的关系。第二种是离子选择性光导纤维系统,通过使用先前经过充分表征的块状光导纤维膜来确定钾离子浓度。这些基于光学吸收的分析实验清楚地证明了无线光度计智能标签的分析性能,与参考实验室仪器的数据一致性非常好。

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