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用于电化学葡萄糖传感器的基于碳纳米管纤维的柔性微电极。

Carbon Nanotube Fiber-Based Flexible Microelectrode for Electrochemical Glucose Sensors.

作者信息

Muqaddas Sheza, Javed Mohsin, Nadeem Sohail, Asghar Muhammad Adeel, Haider Ali, Ahmad Muhammad, Ashraf Ahmad Raza, Nazir Arif, Iqbal Munawar, Alwadai Norah, Ahmad Azhar, Ali Abid

机构信息

Department of Chemistry, The University of Lahore, Lahore54590, Pakistan.

Department of Chemistry, School of Science, University of Management and Technology, Lahore54770, Pakistan.

出版信息

ACS Omega. 2023 Jan 2;8(2):2272-2280. doi: 10.1021/acsomega.2c06594. eCollection 2023 Jan 17.

Abstract

Electrochemical sensors are gaining significant demand for real-time monitoring of health-related parameters such as temperature, heart rate, and blood glucose level. A fiber-like microelectrode composed of copper oxide-modified carbon nanotubes (CuO@CNTFs) has been developed as a flexible and wearable glucose sensor with remarkable catalytic activity. The unidimensional structure of CNT fibers displayed efficient conductivity with enhanced mechanical strength, which makes these fibers far superior as compared to other fibrous-like materials. Copper oxide (CuO) nanoparticles were deposited over the surface of CNT fibers by a binder-free facile electrodeposition approach followed by thermal treatment that enhanced the performance of non-enzymatic glucose sensors. Scanning electron microscopy and energy-dispersive X-ray analysis confirmed the successful deposition of CuO nanoparticles over the fiber surface. Amperometric and voltammetric studies of fiber-based microelectrodes (CuO@CNTFs) toward glucose sensing showed an excellent sensitivity of ∼3000 μA/mM cm, a low detection limit of 1.4 μM, and a wide linear range of up to 13 mM. The superior performance of the microelectrode is attributed to the synergistic effect of the electrocatalytic activity of CuO nanoparticles and the excellent conductivity of CNT fibers. A lower charge transfer resistance value obtained via electrochemical impedance spectroscopy (EIS) also demonstrated the superior electrode performance. This work demonstrates a facile approach for developing CNT fiber-based microelectrodes as a promising solution for flexible and disposable non-enzymatic glucose sensors.

摘要

电化学传感器在实时监测与健康相关的参数(如体温、心率和血糖水平)方面的需求日益显著。一种由氧化铜修饰的碳纳米管(CuO@CNTFs)组成的纤维状微电极已被开发为一种具有卓越催化活性的柔性可穿戴葡萄糖传感器。碳纳米管纤维的一维结构表现出高效的导电性以及增强的机械强度,这使得这些纤维与其他纤维状材料相比具有极大的优势。通过无粘结剂的简便电沉积方法在碳纳米管纤维表面沉积氧化铜(CuO)纳米颗粒,随后进行热处理,提高了非酶葡萄糖传感器的性能。扫描电子显微镜和能量色散X射线分析证实了CuO纳米颗粒成功沉积在纤维表面。基于纤维的微电极(CuO@CNTFs)对葡萄糖传感的安培法和伏安法研究显示出优异的灵敏度,约为3000 μA/mM cm,低检测限为1.4 μM,宽线性范围高达13 mM。微电极卓越的性能归因于CuO纳米颗粒的电催化活性与碳纳米管纤维优异的导电性之间的协同效应。通过电化学阻抗谱(EIS)获得的较低电荷转移电阻值也证明了电极的优异性能。这项工作展示了一种简便的方法来开发基于碳纳米管纤维的微电极,作为柔性和一次性非酶葡萄糖传感器的一种有前景的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c366/9850492/8ca128459f19/ao2c06594_0002.jpg

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