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一种可穿戴式指甲化学传感平台:指尖pH值传感

A wearable fingernail chemical sensing platform: pH sensing at your fingertips.

作者信息

Kim Jayoung, Cho Thomas N, Valdés-Ramírez Gabriela, Wang Joseph

机构信息

Department of Nanoengineering, University of California, La Jolla, CA 92093, United States.

Department of Nanoengineering, University of California, La Jolla, CA 92093, United States.

出版信息

Talanta. 2016 Apr 1;150:622-8. doi: 10.1016/j.talanta.2015.12.083. Epub 2016 Jan 2.

Abstract

This article demonstrates an example of a wearable chemical sensor based on a fingernail platform. Fingernails represent an attractive wearable platform, merging beauty products with chemical sensing, to enable monitoring of our surrounding environment. The new colorimetric pH fingernail sensor relies on coating artificial nails with a recognition layer consisted of pH indicators entrapped in a polyvinyl chloride (PVC) matrix. Such color changing fingernails offer fast and reversible response to pH changes, repeated use, and intense color change detected easily with naked eye. The PVC matrix prevents leaching out of the indicator molecules from the fingernail sensor toward such repeated use. The limited narrow working pH range of a single pH indicator has been addressed by multiplexing three different pH indicators: bromothymol blue (pH 6.0-7.6), bromocresol green (pH 3.8-5.4), and cresol red (pH 7.2-8.8), as demonstrated for analyses of real-life samples of acidic, neutral, and basic character. The new concept of an optical wearable chemical sensor on fingernail platforms can be expanded towards diverse analytes for various applications in connection to the judicious design of the recognition layer.

摘要

本文展示了一个基于指甲平台的可穿戴化学传感器的示例。指甲代表了一个有吸引力的可穿戴平台,它将美容产品与化学传感相结合,以实现对我们周围环境的监测。新型比色pH指甲传感器依靠在人造指甲上涂覆一层识别层,该识别层由包裹在聚氯乙烯(PVC)基质中的pH指示剂组成。这种变色指甲对pH变化具有快速且可逆的响应、可重复使用,并且肉眼能轻松检测到明显的颜色变化。PVC基质可防止指示剂分子从指甲传感器中浸出,从而实现这种重复使用。通过复用三种不同的pH指示剂:溴百里酚蓝(pH 6.0 - 7.6)、溴甲酚绿(pH 3.8 - 5.4)和甲酚红(pH 7.2 - 8.8),解决了单一pH指示剂工作pH范围有限且狭窄的问题,如对酸性、中性和碱性的实际样品分析所示。基于指甲平台的光学可穿戴化学传感器的新概念可以通过识别层的明智设计扩展到用于各种应用的多种分析物。

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