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用于水中高锰酸盐宽动态范围检测的碳纳米管渗流网络优化

Optimization of Carbon Nanotube Percolation Networks for Broad Dynamic Range Detection of Permanganate in Water.

作者信息

Akbar Md Ali, Selvaganapathy Ponnambalam Ravi, Kruse Peter

机构信息

Department of Chemistry and Chemical Biology, McMaster University, 1280 Main St. W., Hamilton, Ontario L8S 4M1, Canada.

Department of Mechanical Engineering, McMaster University, 1280 Main St. W., Hamilton, Ontario L8S 4L7, Canada.

出版信息

J Phys Chem C Nanomater Interfaces. 2025 Jul 31;129(32):14583-14592. doi: 10.1021/acs.jpcc.5c03233. eCollection 2025 Aug 14.

Abstract

Percolation networks of single-walled carbon nanotubes (SWCNTs) are widely used in chemiresistive sensors due to their tunable electronic properties, which control the sensitivity of the devices. This study explores the tunability of the electronic properties of SWCNT-based chemiresistive films by controlling the percolation network density. We demonstrate that simple spectroscopic measurements can ensure repeatability in the sensor fabrication process and that optimizing the percolation network can expand the useful detection range for the desired analyte. We show that percolation networks within three resistance ranges can be utilized to detect a disinfectant (permanganate), which has applications over a wide concentration range. Devices fabricated with the highest resistance (∼25 kΩ) were shown to detect lower range concentrations of permanganate (0.01-0.1 mg/L, limit of detection, LoD 0.0001 mg/L), medium resistance devices (∼15 kΩ) can detect midrange concentrations (0.2-1.6 mg/L, LoD 0.002 mg/L), and low-resistance devices (∼5 kΩ) can detect high-range concentrations (1- 8 mg/L, LoD 0.03 mg/L), depending on the specific application. SWCNT networks can also be further functionalized to enhance the sensitivity, selectivity, and stability of the devices. This study highlights the potential of SWCNT percolation networks for customizable chemiresistive sensing in environmental monitoring and industrial applications.

摘要

单壁碳纳米管(SWCNT)的渗流网络因其可调节的电子特性而被广泛应用于化学电阻传感器中,这些特性控制着器件的灵敏度。本研究通过控制渗流网络密度来探索基于SWCNT的化学电阻薄膜电子特性的可调性。我们证明简单的光谱测量可以确保传感器制造过程的可重复性,并且优化渗流网络可以扩大对所需分析物的有效检测范围。我们表明,在三个电阻范围内的渗流网络可用于检测一种消毒剂(高锰酸盐),其在很宽的浓度范围内都有应用。结果显示,电阻最高(约25 kΩ)的器件可检测较低浓度范围的高锰酸盐(0.01 - 0.1 mg/L,检测限,LoD 0.0001 mg/L),中等电阻器件(约15 kΩ)可检测中等浓度范围(0.2 - 1.6 mg/L,LoD 0.002 mg/L),低电阻器件(约5 kΩ)可检测高浓度范围(1 - 8 mg/L,LoD 0.03 mg/L),具体取决于特定应用。SWCNT网络还可以进一步功能化,以提高器件的灵敏度、选择性和稳定性。本研究突出了SWCNT渗流网络在环境监测和工业应用中用于定制化学电阻传感的潜力。

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本文引用的文献

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Continuous Monitoring of Free Chlorine Level and pH Using an Array of Carbon Nanotube Chemiresistors.
ACS Omega. 2025 Jun 30;10(27):29074-29086. doi: 10.1021/acsomega.5c01256. eCollection 2025 Jul 15.
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ACS Appl Eng Mater. 2023 Oct 29;1(11):3040-3052. doi: 10.1021/acsaenm.3c00505. eCollection 2023 Nov 24.
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RSC Adv. 2022 Jan 18;12(4):2485-2496. doi: 10.1039/d1ra08264g. eCollection 2022 Jan 12.
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Analytical quantification of aqueous permanganate: Direct and indirect spectrophotometric determination for water treatment processes.
Chemosphere. 2020 Jul;251:126626. doi: 10.1016/j.chemosphere.2020.126626. Epub 2020 Apr 1.

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