Yu Jingjing, Wang Di, Tipparaju Vishal Varun, Tsow Francis, Xian Xiaojun
Center for Bioelectronics and Biosensors, The Biodesign Institute, Arizona State University, Tempe, Arizona 85287, United States.
ACS Sens. 2021 Feb 26;6(2):303-320. doi: 10.1021/acssensors.0c01644. Epub 2020 Oct 21.
Colorimetric sensing technologies have been widely used for both quantitative detection of specific analyte and recognition of a large set of analytes in gas phase, ranging from environmental chemicals to biomarkers in breath. However, the accuracy and reliability of the colorimetric gas sensors are threatened by the humidity interference in different application scenarios. Though substantial progress has been made toward new colorimetric sensors development, unless the humidity interference is well addressed, the colorimetric sensors cannot be deployed for real-world applications. Although there are comprehensive and insightful review articles about the colorimetric gas sensors, they have focused more on the progress in new sensing materials, new sensing systems, and new applications. There is a need for reviewing the works that have been done to solve the humidity issue, a challenge that the colorimetric gas sensors commonly face. In this review paper, we analyzed the mechanisms of the humidity interference and discussed the approaches that have been reported to mitigate the humidity interference in colorimetric sensing of environmental gases and breath biomarkers. Finally, the future perspectives of colorimetric sensing technologies are also discussed.
比色传感技术已广泛应用于特定分析物的定量检测以及气相中大量分析物的识别,检测范围涵盖从环境化学物质到呼出气体中的生物标志物。然而,在不同应用场景中,比色气体传感器的准确性和可靠性受到湿度干扰的威胁。尽管在新型比色传感器的开发方面已取得了重大进展,但除非湿度干扰问题得到妥善解决,否则比色传感器无法应用于实际场景。虽然有关于比色气体传感器的全面且有见地的综述文章,但它们更多地关注新型传感材料、新型传感系统和新应用方面的进展。有必要回顾一下为解决湿度问题所做的工作,这是比色气体传感器普遍面临的一个挑战。在这篇综述论文中,我们分析了湿度干扰的机制,并讨论了已报道的减轻比色传感环境气体和呼出生物标志物时湿度干扰的方法。最后,还讨论了比色传感技术的未来前景。