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Batch microfabrication of highly integrated silicon-based electrochemical sensor and performance evaluation via nitrite water contaminant determination

机译:通过亚硝酸盐水污染测定的高度集成硅电化学传感器和性能评估的批量微型制剂

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Electrochemical sensors play a key role in the monitoring of pollutants in water due to their high-sensitivity and short-response-time etc. However, the stability for long-term sensing testing and hard to mass production of electrochemical sensors always is a challenge issue. In this paper, a novel silicon-based electrochemical sensor that can be mass-produced via the microfabrication technique/MEMS is proposed. By fabricating a liquid conjunct Ag/AgCl reference electrode, employing relatively electrochemical stable Au as the working electrode/counter electrode and verified the effectiveness of as-fabricated sensor by nitrite detection, the micro-fabricated electrochemical sensor demonstrates acceptable limit of detection, desirable linearity and good resistance to other interference substances. Particularly, satisfactory long-term stability was witnessed for the proposed sensor. After continuously operated for 19 days, the sensor still kept 94% response signal when compared with that of the value obtained at its initial state. What's more, by employing the mass-production technique, favorable response consistency and high reproducibility was witnessed, offering the opportunity of mass-producing the proposed sensor in future. And the high consistency and satisfactory long-term stability of as-proposed sensor indicated that the study on mass production electrochemical sensor fabricating by MEMS was a successful attempt. It is anticipated that the proposed sensor configuration will provide an alternative strategy to design future low power and reliable mini-sensor for water contaminants monitoring. (C) 2020 Elsevier Ltd. All rights reserved.
机译:电化学传感器由于其高灵敏度和短响应时间等而在水中监测污染物的关键作用,但是,长期感应测试和难以批量生产电化学传感器的稳定性始终是一个挑战问题。本文提出了一种新型硅基电化学传感器,其可以通过微型制造技术/ MEMS批量生产。通过制造液体混合Ag / AgCl参考电极,采用相对电化学稳定的Au作为工作电极/对电极,并通过亚硝酸盐检测验证了用作制造传感器的有效性,微制成电化学传感器显示了可接受的检测极限,理想的线性良好的抵抗其他干涉物质。特别地,所提出的传感器目睹了令人满意的长期稳定性。在连续操作19天后,与在其初始状态下获得的值相比,传感器仍然保持94%的响应信号。更重要的是,通过采用批量生产技术,有利的响应一致性和高再现性得到了见证,提供了将来生产提出的传感器的机会。和所提出的传感器的高一致性和令人满意的长期稳定性表明,MEMS制造的批量生产电化学传感器的研究是成功的尝试。预计建议的传感器配置将提供一种设计未来低功耗和可靠的迷你传感器的替代策略,用于水污染物监测。 (c)2020 elestvier有限公司保留所有权利。

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