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基于藻类聚合物的先进洛夫波传感器用于检测法属圭亚那水域中的汞。

Advanced Love wave sensor based on algal polymers for the detection of mercury in French Guiana waters.

作者信息

Gongi Wejdene, Mougin Karine, Rube Maxence, Dejous Corinne, Ouada Hatem Ben, Tamarin Ollivier

机构信息

UMR 228 Espace-Dev, French Guiana University, 97300, Cayenne, France.

Institute of Materials Science of Mulhouse, CNRS, 68200, Mulhouse, France.

出版信息

Sci Rep. 2025 Jul 1;15(1):21784. doi: 10.1038/s41598-025-99494-8.

Abstract

The findings presented in this paper demonstrate the effectiveness of a new method for analyzing the electroacoustic response of Love wave acoustic sensors to assess the mechanical and dielectric properties of liquid samples. The Love wave sensor was modified by applying a solution of extracellular polymeric substances (EPS) using a self-assembled monolayer technique. The mechanical parameters of the EPS-modified sensors, such as insertion losses and phase, were found to be slightly affected by turbidity, even at high levels, while allowing a chemical detection by mass loading effect. On the other hand, the sensor electrical parameters such as capacitance and resistance showed a positive correlation with increasing turbidity. The experimental chemical detection also showed changes in the mechanical parameters (wave amplitude and phase) of the EPS-modified sensor in response to different concentrations of mercury (Hg), ranging from 10E-10 M to 10E-2 M. Furthermore, the study utilized response surface methodology to analyze the nonlinear behavior of the sensor under combined factors of turbidity and mercury concentration. Through this approach, a mathematical model was developed to simulate measurements of capacitance and resistance, considering both turbidity and mercury concentration as variables. This study demonstrated that integrating an EPS-Love wave sensor enables the simultaneous detection of mercury concentration and assessment of water turbidity via changes in capacitance and resistance, underscoring the sensor's promise for high-performance environmental monitoring.

摘要

本文所呈现的研究结果表明,一种用于分析洛夫波声学传感器电声响应以评估液体样品机械和介电性能的新方法是有效的。通过使用自组装单分子层技术施加细胞外聚合物(EPS)溶液对洛夫波传感器进行了改性。发现即使在高浊度水平下,EPS改性传感器的机械参数(如插入损耗和相位)受浊度的影响也较小,同时可通过质量负载效应进行化学检测。另一方面,传感器的电学参数(如电容和电阻)与浊度增加呈正相关。实验性化学检测还表明,EPS改性传感器的机械参数(波幅和相位)会因不同浓度的汞(Hg)(范围从10E - 10 M至10E - 2 M)而发生变化。此外,该研究利用响应面方法分析了传感器在浊度和汞浓度综合因素下的非线性行为。通过这种方法,开发了一个数学模型来模拟电容和电阻的测量,将浊度和汞浓度都视为变量。这项研究表明,集成EPS - 洛夫波传感器能够通过电容和电阻的变化同时检测汞浓度并评估水体浊度,突出了该传感器在高性能环境监测方面的前景。

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