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用于气体传感的基于喷墨打印发光二极管的pH化学传感器。

Inkjet printed LED based pH chemical sensor for gas sensing.

作者信息

O'Toole Martina, Shepherd Roderick, Wallace Gordon G, Diamond Dermot

机构信息

CLARITY: Centre for Sensor Web Technologies, National Centre for Sensor Research, School of Chemical Sciences, Dublin City University, Dublin 9, Ireland.

出版信息

Anal Chim Acta. 2009 Oct 12;652(1-2):308-14. doi: 10.1016/j.aca.2009.07.019. Epub 2009 Jul 21.

Abstract

Predictable behaviour is a critical factor when developing a sensor for potential deployment within a wireless sensor network (WSN). The work presented here details the fabrication and performance of an optical chemical sensor for gaseous acetic acid analysis, which was constructed using inkjet printed deposition of a colorimetric chemical sensor. The chemical sensor comprised a pH indicator dye (bromophenol blue), phase transfer salt tetrahexylammonium bromide and polymer ethyl cellulose dissolved in 1-butanol. A paired emitter-detector diode (PEDD) optical detector was employed to monitor responses of the colorimetric chemical sensor as it exhibits good sensitivity, low power consumption, is low cost, accurate and has excellent signal-to-noise ratios. The chemical sensor formulation was printed directly onto the surface of the emitter LED, and the resulting chemical sensors characterised with respect to their layer thickness, response time and recovery time. The fabrication reproducibility of inkjet printed chemical sensors in comparison to drop casted chemical sensors was investigated. Colorimetric chemical sensors produced by inkjet printing, exhibited an improved reproducibility for the detection of gaseous acetic acid with a relative standard deviation of 5.5% in comparison to 68.0% calculated for drop casted sensors (n=10). The stability of the chemical sensor was also investigated through both intra and inter-day studies.

摘要

在开发可能部署于无线传感器网络(WSN)中的传感器时,可预测行为是一个关键因素。本文介绍了一种用于气态乙酸分析的光学化学传感器的制造及性能,该传感器是通过喷墨打印沉积比色化学传感器构建而成的。化学传感器由pH指示剂染料(溴酚蓝)、相转移盐四己基溴化铵和溶解在正丁醇中的聚合物乙基纤维素组成。采用配对发射极 - 探测器二极管(PEDD)光学探测器来监测比色化学传感器的响应,因为它具有良好的灵敏度、低功耗、低成本、准确性高且信噪比优异。将化学传感器配方直接打印在发射极发光二极管(LED)表面,并对所得化学传感器的层厚度、响应时间和恢复时间进行了表征。研究了喷墨打印化学传感器与滴铸化学传感器相比的制造重现性。通过喷墨打印生产的比色化学传感器在检测气态乙酸时表现出更高的重现性,相对标准偏差为5.5%,而滴铸传感器计算得出的相对标准偏差为68.0%(n = 10)。还通过日内和日间研究对化学传感器的稳定性进行了研究。

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