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使用基于智能手机的电化学系统和单壁碳纳米管(SWCNTs)/炭黑(CB)修饰的ITO电极对多种金属离子进行高灵敏度流动检测。

High-Sensitivity Flow Detection of Multiple Metal Ions Using a Smartphone-Based Electrochemical System with Single-Walled Carbon Nanotubes (SWCNTs)/Carbon Black (CB)-Modified ITO Electrode.

作者信息

Li Xinxin, Wang Yicheng, Li Yang, Han Huizhong, Uddin Emad, Liu Chong, Li Jingmin

机构信息

School of Mechanical Engineering, Dalian University of Technology, Dalian, 116024, China.

Sinopec Catalyst Co., Ltd. Qilu Branch, Zibo, 255000, China.

出版信息

Langmuir. 2025 Jul 15;41(27):17692-17702. doi: 10.1021/acs.langmuir.5c01354. Epub 2025 Jul 5.

Abstract

This paper proposes a smartphone-based electrochemical detection instrument, combined with a microfluidic device using Microelectromechanical systems (MEMS) technology integrating a thin-layer flow cell and a modified ITO electrode to successfully construct a portable multiple metal ions detection system. This effectively addresses the issues of poor portability, complex operation, and strong reliance on the laboratory environment of traditional detection equipment. The electrochemical detection instrument realizes the highly sensitive detection of metal ions through the integrated hardware circuit design and the collaborative work of software algorithms. The hardware circuit is based on an STM32 microcontroller as the core, combined with a constant potential circuit and low-pass filtering circuit, which realizes high-precision acquisition of weak current signal and anti-interference processing, and the low-pass filtering makes the signal-to-noise ratio of cyclic voltammetry curves significantly improved. The application (APP) software for smartphones was developed to improve the data quality based on cubic spline interpolation and smoothing algorithm, and the Levenberg-Marquardt nonlinear fitting algorithm was used to optimize the parameters of the model so that the R value of data fitting was more than 0.99, which improves the analytical accuracy and ensures the reliability of the measurement. Further, a microfluidic device modified by single-walled carbon nanotubes (SWCNTs)/conductive carbon black (CB) was devised and built, combined with a detection instrument with a fluidic control unit to promote sample diffusion and enhance sensitivity. According to the results, the detection limits of the system for the metal ions, Cu, Pb, and Cd were 88 μg/L, 0.73 μg/L and 2.3 μg/L, respectively, which verified its effectiveness and potential application in the immediate detection of metal ions and can meet the needs of the point-of-use (POU).

摘要

本文提出了一种基于智能手机的电化学检测仪器,结合采用微机电系统(MEMS)技术的微流控装置,该装置集成了薄层流通池和修饰的ITO电极,成功构建了便携式多金属离子检测系统。这有效解决了传统检测设备便携性差、操作复杂以及对实验室环境依赖性强的问题。该电化学检测仪器通过集成硬件电路设计和软件算法协同工作,实现了对金属离子的高灵敏度检测。硬件电路以STM32微控制器为核心,结合恒电位电路和低通滤波电路,实现了对微弱电流信号的高精度采集和抗干扰处理,低通滤波使循环伏安曲线的信噪比显著提高。开发了用于智能手机的应用程序(APP)软件,基于三次样条插值和平滑算法提高数据质量,并采用Levenberg-Marquardt非线性拟合算法优化模型参数,使数据拟合的R值大于0.99,提高了分析精度并确保了测量的可靠性。此外,设计并构建了一种由单壁碳纳米管(SWCNTs)/导电炭黑(CB)修饰的微流控装置,与带有流体控制单元的检测仪器相结合,促进样品扩散并提高灵敏度。结果表明,该系统对金属离子Cu、Pb和Cd的检测限分别为88μg/L、0.73μg/L和2.3μg/L,验证了其在金属离子即时检测中的有效性和潜在应用,能够满足现场使用(POU)的需求。

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