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首页> 外文期刊>microsystems & nanoengineering >A batch microfabrication of a self-cleaning, ultradurable electrochemical sensor employing a BDD film for the online monitoring of free chlorine in tap water
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A batch microfabrication of a self-cleaning, ultradurable electrochemical sensor employing a BDD film for the online monitoring of free chlorine in tap water

机译:采用BDD薄膜的自清洁超耐用电化学传感器的批量微加工,用于自来水中游离氯的在线监测

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Free chlorine is one of the key water quality parameters in tap water. However, a free chlorine sensor with the characteristics of batch processing, durability, antibiofouling/antiorganic passivation and in situ monitoring of free chlorine in tap water continues to be a challenging issue. In this paper, a novel silicon-based electrochemical sensor for free chlorine that can self-clean and be mass produced via microfabrication technique/MEMS (Micro-Electro-Mechanical System) is proposed. A liquid-conjugated Ag/AgCl reference electrode is fabricated, and electrochemically stable BDD/Pt is employed as the working/counter electrode to verify the effectiveness of the as-fabricated sensor for free chlorine detection. The sensor demonstrates an acceptable limit of detection (0.056 mg/L) and desirable linearity (R-2 = 0.998). Particularly, at a potential of +2.5 V, hydroxyl radicals are generated on the BBD electrode by electrolyzing water, which then remove the organic matter attached to the surface of the sensor though an electrochemical digestion process. The performance of the fouled sensor recovers from 50.2 to 94.1 compared with the initial state after self-cleaning for 30 min. In addition, by employing the MEMS technique, favorable response consistency and high reproducibility (RSD < 4.05) are observed, offering the opportunity to mass produce the proposed sensor in the future. A desirable linear dependency between the pH, temperature, and flow rate and the detection of free chlorine is observed, ensuring the accuracy of the sensor with any hydrologic parameter. The interesting sensing and self-cleaning behavior of the as-proposed sensor indicate that this study of the mass production of free chlorine sensors by MEMS is successful in developing a competitive device for the online monitoring of free chlorine in tap water.
机译:游离氯是自来水中的关键水质参数之一。然而,具有间歇处理、耐久性、抗生物污垢/抗有机钝化和自来水中游离氯原位监测等特点的游离氯传感器仍然是一个具有挑战性的问题。本文提出了一种新型的硅基游离氯电化学传感器,该传感器可通过微纳加工技术/MEMS(Micro-Electro-Mechanical System)进行自清洁和批量生产。制备了液体共轭的Ag/AgCl参比电极,并采用电化学稳定的BDD/Pt作为工作/对电极,验证了该传感器在游离氯检测中的有效性。该传感器具有可接受的检测限 (0.056 mg/L) 和理想的线性度 (R-2 = 0.998)。特别是,在+2.5 V的电位下,通过电解水在BBD电极上产生羟基自由基,然后通过电化学消解过程去除附着在传感器表面的有机物。自清洁 30 分钟后,与初始状态相比,结垢传感器的性能从 50.2% 恢复到 94.1%。此外,通过采用MEMS技术,观察到良好的响应一致性和高重现性(RSD < 4.05%),为未来大规模生产所提出的传感器提供了机会。观察到pH值、温度和流速与游离氯检测之间理想的线性依赖性,确保传感器在任何水文参数下的准确性。该传感器有趣的传感和自清洁行为表明,MEMS大规模生产游离氯传感器的研究成功地开发了一种具有竞争力的自来水中游离氯在线监测设备。

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