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A ph sensor based on a flexible substrate.

机译:基于柔性基板的pH传感器。

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摘要

pH sensor is an essential component used in many chemical, food, and bio-material industries. Conventional glass electrodes have been used to construct pH sensors, however, have some disadvantages. Glass electrodes are easily affected by alkaline or HF solution, they require a high input impedance pH meter, they often exhibit a sluggish response. In some specific applications, it is also difficult to use glass electrodes for in vivo biomedical or food monitoring applications due to the difficulty of size miniaturization, planarization and polymerization based on current manufacturing technologies.;In this work, we have demonstrated a novel flexible pH sensor based on low-cost sol-gel fabrication process of iridium oxide (IrOx) sensing film (IROF). A pair of flexible miniature IrOx/AgCl electrode generated the action potential from the solution by electrochemical mechanism to obtain the pH level of the reagent. The fabrication process including sol-gel, thermal oxidation, and the electro-plating process of the silver chloride (AgCl) reference electrode were reported in the work.;The IrOx film was verified and characterized using electron dispersive analysis (EDAX), scanning electron microscope (SEM), and x-ray diffraction (XRD). The flexible pH sensor's performance and characterization have been investigated with different testing parameters such as sensitivity, response time, stability, reversibility, repeatability, selectivity and temperature dependence. The flexible IrOx pH sensors exhibited promising sensing performance with a near-Nernstian response of sensitivity which is between –51.1mV/pH and –51.7mV/pH in different pH levels ranging from 1.5 to 12 at 25°C.;Two applications including gastroesophageal reflux disease (GERD) diagnosis and food freshness wireless monitoring using our micro-flexible IrOx pH sensors were demonstrated. For the GERD diagnosing system, we embedded the micro flexible pH sensor on a 1.2cmx3.8cm of the capsule size of wireless sensor implanted inside the esophagus. Our pH electrode can monitor the pH changes of gastric juice in real time when the reflux happening in the esophagus. Our micro flexible pH sensor performed clear responses in each distinct pH reflux episode quickly and accurately comparing with the other commercial pH monitoring system.;For the food freshness monitoring applications, we used the flexible pH sensor as a freshness indicator to monitor the pH changing profile during the food spoilage procedure. The sensor was then embedded with radio frequency identification (RFID) based passive telemetry enabling remote monitoring of food freshness. In the result, our pH-wireless RFID system presented 633Hz/pH of the sensitivity in the frequency calibration. The calibration of stability and dynamical response of the RFID system were also demonstrated before the test on food freshness monitoring. Finally, a white fish meat for long term spoilage procedure monitoring was applied and tested by using our wireless IrOx pH sensing system. Our RFID pH sensing module is able to monitor, collect and transmit the pH information continuously for 18 hours during the food spoilage procedure.;In this dissertation, a micro size of IrOx/AgCl pH sensor was fabricated on a flexible substrate. The physical properties of the IrO x thin film was verified in the work. The different sensing capability such as the sensitivity, stability, reversibility, response time, repeatability, selectivity, and temperature dependence was then demonstrated in this work. After the different in-vitro tests, the pH sensor were embedded with our passive RFID circuitry for the in-vivo GERD diagnosis and food freshness monitoring application. Our wireless pH sensing system was able to deliver the accurate and quick pH sensing data wirelessly.;In conclusion, our deformable IrOx pH electrodes have been demonstrated with the advantages of accommodating and conforming sensors in small spaces or curved surfaces. This miniature IrOx pH sensor can respond to distinct potentials of the various pH levels as traditional glass electrodes, however, the miniature, bio-compatible and flexible substrate and the ability to be integrated in batterryless telemetry enable the pH sensor to be applied on many new medical, bio-chemical and biological field.
机译:pH传感器是许多化学,食品和生物材料行业中使用的必不可少的组件。常规的玻璃电极已经用于构造pH传感器,但是具有一些缺点。玻璃电极容易受到碱性或HF溶液的影响,它们需要高输入阻抗的pH计,它们通常显示出缓慢的响应。在某些特定的应用中,由于目前的制造技术难以实现尺寸微型化,平面化和聚合的困难,因此难以在体内生物医学或食品监控应用中使用玻璃电极。在这项工作中,我们证明了一种新颖的柔性pH传感器基于低成本的氧化铱(IrOx)传感膜(IROF)的溶胶-凝胶制造工艺。一对柔性的微型IrOx / AgCl电极通过电化学机理从溶液中产生了动作电位,从而获得了试剂的pH值。报道了溶胶-凝胶,热氧化和氯化银(AgCl)参比电极的电镀工艺的制备过程。; IrOx膜通过电子色散分析(EDAX),扫描电子进行了验证和表征显微镜(SEM)和X射线衍射(XRD)。已使用不同的测试参数(例如灵敏度,响应时间,稳定性,可逆性,可重复性,选择性和温度依赖性)对柔性pH传感器的性能和特性进行了研究。灵活的IrOx pH传感器在25°C的1.5至12范围内的不同pH值范围内,具有接近于能斯特的灵敏度,响应范围在–51.1mV / pH和–51.7mV / pH之间,显示出令人鼓舞的传感性能;两种应用包括胃食管演示了使用我们的微型柔性IrOx pH传感器进行的反流疾病(GERD)诊断和食品新鲜度无线监控。对于GERD诊断系统,我们将微型柔性pH传感器嵌入到植入食管内无线传感器胶囊大小的1.2cmx3.8cm内。当食道反流时,我们的pH电极可以实时监测胃液的pH变化。与其他商用pH监测系统相比,我们的微型柔性pH传感器在每个不同的pH回流事件中均能快速,准确地做出清晰的响应;;对于食品新鲜度监测应用,我们使用柔性pH传感器作为新鲜度指示器来监测pH变化情况在食物变质过程中。然后将传感器嵌入基于射频识别(RFID)的无源遥测技术,从而可以远程监控食品的新鲜度。结果,我们的pH无线RFID系统在频率校准中提供了633Hz / pH的灵敏度。在食品新鲜度监测测试之前,还演示了RFID系统的稳定性和动态响应校准。最后,使用我们的无线IrOx pH传感系统对白色鱼肉进行了长期腐败过程监控,并进行了测试。我们的RFID pH传感模块能够在食物变质过程中连续18个小时监控,收集和传输pH信息。;本文在柔性基板上制作了微型IrOx / AgCl pH传感器。在工作中验证了IrO x薄膜的物理性能。然后在这项工作中展示了不同的传感能力,例如灵敏度,稳定性,可逆性,响应时间,可重复性,选择性和温度依赖性。经过各种体外测试后,pH传感器被嵌入我们的无源RFID电路中,用于体内GERD诊断和食品新鲜度监测应用。我们的无线pH传感系统能够无线准确,快速地传递pH数据。总之,我们的可变形IrOx pH电极已被证明具有在狭小空间或曲面中容纳和贴合传感器的优势。这种微型IrOx pH传感器可以像传统的玻璃电极一样响应各种pH值的不同电位,但是,微型,生物相容性和柔性基板以及集成在无电池遥测中的能力使得pH传感器可以应用于许多新型医学,生化和生物领域。

著录项

  • 作者

    Huang, Wen-Ding.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Chemical.;Engineering Electronics and Electrical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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