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基于石墨烯纳米结构的化学电阻传感器阵列:从氨气和可能存在的干扰 VOC 检测到化学计量分析。

A Chemiresistor Sensor Array Based on Graphene Nanostructures: From the Detection of Ammonia and Possible Interfering VOCs to Chemometric Analysis.

机构信息

Surface Science and Spectroscopy Lab @ I-Lamp, Department of Mathematics and Physics, Università Cattolica del Sacro Cuore, Via della Garzetta 48, 25123 Brescia, Italy.

出版信息

Sensors (Basel). 2023 Jan 12;23(2):882. doi: 10.3390/s23020882.

Abstract

Sensor arrays are currently attracting the interest of researchers due to their potential of overcoming the limitations of single sensors regarding selectivity, required by specific applications. Among the materials used to develop sensor arrays, graphene has not been so far extensively exploited, despite its remarkable sensing capability. Here we present the development of a graphene-based sensor array prepared by dropcasting nanostructure and nanocomposite graphene solution on interdigitated substrates, with the aim to investigate the capability of the array to discriminate several gases related to specific applications, including environmental monitoring, food quality tracking, and breathomics. This goal is achieved in two steps: at first the sensing properties of the array have been assessed through ammonia exposures, drawing the calibration curves, estimating the limit of detection, which has been found in the ppb range for all sensors, and investigating stability and sensitivity; then, after performing exposures to acetone, ethanol, 2-propanol, sodium hypochlorite, and water vapour, chemometric tools have been exploited to investigate the discrimination capability of the array, including principal component analysis (PCA), linear discriminant analysis (LDA), and Mahalanobis distance. PCA shows that the array was able to discriminate all the tested gases with an explained variance around 95%, while with an LDA approach the array can be trained to accurately recognize unknown gas contribution, with an accuracy higher than 94%.

摘要

传感器阵列由于其在选择性方面克服了单个传感器的局限性,因此目前引起了研究人员的兴趣,这是特定应用所需要的。在用于开发传感器阵列的材料中,尽管石墨烯具有出色的传感能力,但到目前为止,其尚未得到广泛应用。在这里,我们介绍了一种基于石墨烯的传感器阵列的开发,该传感器阵列是通过将纳米结构和纳米复合石墨烯溶液滴落在叉指基底上来制备的,目的是研究该阵列识别与特定应用(包括环境监测、食品质量跟踪和呼吸组学)相关的多种气体的能力。这一目标分两步实现:首先,通过氨气暴露评估了阵列的传感性能,绘制了校准曲线,估计了检测限,所有传感器的检测限都在 ppb 范围内,同时还研究了稳定性和灵敏度;然后,在对丙酮、乙醇、2-丙醇、次氯酸钠和水蒸气进行暴露后,利用主成分分析(PCA)、线性判别分析(LDA)和马氏距离等化学计量工具研究了阵列的区分能力。PCA 表明,该阵列能够区分所有测试的气体,解释方差约为 95%,而通过 LDA 方法,该阵列可以被训练来准确识别未知气体的贡献,准确率高于 94%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45b0/9862857/8bb6b6139473/sensors-23-00882-g001.jpg

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