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Smart Test Strips: Next-Generation Inkjet-Printed Wireless Comprehensive Liquid Sensing Platforms

机译:智能测试条:下一代喷墨打印的无线综合液体传感平台

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摘要

By combining radio-frequency identification (RFID) and paper-microfluidics technologies, a low-cost first-of-its-kind platform for comprehensive liquid sensing, i.e., the “smart test strip,” is presented, which enables portable wireless real-time liquid sensing with handhold devices (e.g., cell phones), and integration of various multifunctional electrical and chemical sensors, for numerous Lab-on-Chip applications, including manufacturing control, environmental monitoring, and point-of-care medical diagnostics. The fabrication of RFID tags and two types of microfluidics are accomplished by a single inkjet-printing process in a cost-effective environmental-friendly additive manufacturing approach, which makes possible the production of disposable, lightweight, and flexible sensing platforms. Taking advantage of the proposed smart test strips platforms, we demonstrate two proof-of-concept high-performance electrical sensors based on interdigitated electrode topologies: a resistivity-based sensor with a 1782 /( *m) sensitivity; nevertheless, the proposed permittivity-based sensor with a 15%/ sensitivity, but the proposed integrated wireless platform, can facilitate the integration of even more chemical and electrical sensors. In addition, two on-strip antenna prototypes have been designed, optimized, and tested to work at 2.4 GHz and 13.56 MHz, respectively. Furthermore, the wireless interrogation of a complete proof-of-concept smart test strip is presented, which shows an excellent sensing resolution of 1.33 over the range of 0–1371 .
机译:通过将射频识别(RFID)和纸张微流体技术相结合,提出了一种用于全面液体感测的低成本同类平台,即“智能测试条”,该平台可实现便携式无线实时检测。使用手持设备(例如手机)进行实时液体传感,以及各种多功能电气和化学传感器的集成,可用于众多片上实验室应用,包括制造控制,环境监测和即时医疗诊断。 RFID标签和两种微流体的制造可以通过一种低成本的环保增材制造方法,通过一次喷墨印刷工艺完成,这使得生产一次性,轻便和灵活的传感平台成为可能。利用建议的智能测试条平台,我们演示了两个基于叉指式电极拓扑的概念验证高性能电传感器:基于电阻率的传感器,灵敏度为1782 /(* m);基于电阻率的传感器;尽管如此,建议的基于电容率的传感器灵敏度为15%,但是建议的集成无线平台可以促进更多化学和电气传感器的集成。此外,已经设计,优化和测试了两个带上天线原型,分别在2.4 GHz和13.56 MHz下工作。此外,还提出了完整的概念验证智能测试条的无线询问,该测试条在0–1371的范围内显示出1.33的出色感测分辨率。

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