使用功能化多壁碳纳米管/镍银纳米复合材料增强尿酸检测:丝网印刷碳电极 (SPCE) 与织物生物传感器的比较研究

IF 6.5 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Yuan Alfinsyah Sihombing , Uperianti , Rizky Indah Sari , Beni Rio Hermanto , Murni Handayani , Samuel Priyantoro Kusumocahyo , Mokhamad Fakhrul Ulum , Rikson Siburian , Cepi Kurniawan , Nuni Widiarti , Yeni Wahyuni Hartati , Isa Anshori
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引用次数: 0

摘要

在生物传感器的开发过程中,必须要有能提供快速响应、高灵敏度和高选择性以及非侵入性的传感器,例如基于丝网印刷碳电极的生物传感器。本研究利用功能化多壁碳纳米管/镍银纳米复合材料(f-MWCNT/AgNi)对工作电极(WE)表面进行修饰,制作了基于丝网印刷碳电极和织物的生物传感器,以提高生物传感器检测尿酸(UA)的性能。紫外可见光、拉曼、扫描电镜-电子显微镜和 XRD 分析证实了 f-MWCNT/AgNi 纳米材料的成功合成。采用滴注法将 f-MWCNT/AgNi 纳米材料沉积在 WE 表面。随后,使用循环伏安法(CV)和微分脉冲伏安法(DPV)进行了电化学特性测试和 UA 检测性能测试。DPV 曲线显示,基于 SPCE 的电极和基于织物的电极的灵敏度分别为 27.699 μA/mM 和 4.638 μA/mM。UA 的检测限 (LOD) 值分别为 0.024 和 0.017 mM,在 0.05-1.00 和 1.0-5.0 mM 的线性范围内,线性度 (R2) 分别为 0.997 和 0.999。与抗坏血酸、葡萄糖、乳酸和乙醇等其他成分相比,这两种生物传感器都对 UA 具有很强的选择性。基于这些参数值,f-MWCNT/AgNi 改性的 SPCE 和织物电极可作为检测尿酸的生物传感器加以推广。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced uric acid detection using functionalized multi-walled carbon nanotube/AgNi nanocomposites: A comparative study on screen-printed carbon electrode (SPCE) and fabric-based biosensors

Enhanced uric acid detection using functionalized multi-walled carbon nanotube/AgNi nanocomposites: A comparative study on screen-printed carbon electrode (SPCE) and fabric-based biosensors

In the development of biosensors, it is essential to have sensors that provide rapid responses, exhibit high sensitivity and selectivity, and are non-invasive, such as screen-printed carbon electrode-based biosensors. In this study, SPCE-based and fabric-based biosensors were fabricated by modifying the working electrode (WE) surface using functionalized Multi-walled Carbon Nanotube/AgNi nanocomposites (f-MWCNT/AgNi) to enhance the biosensor's performance in detecting uric acid (UA). The successful synthesis of the f-MWCNT/AgNi nanomaterial was confirmed through UV–Vis, Raman, SEM–EDX, and XRD analyses. The f-MWCNT/AgNi nanomaterials were deposited on the WE surface using drop-casting. Subsequently, electrochemical characteristic tests and UA detection performance were conducted using cyclic voltammetry (CV) and differential pulse voltammetry (DPV) methods. The DPV curves revealed sensitivities of 27.699 μA/mM and 4.638 μA/mM for SPCE-based and fabric-based electrodes, respectively. The limit of detection (LOD) values for UA detection were 0.024 and 0.017 mM, with linearity (R2) 0.997 and 0.999 observed within the linear ranges of 0.05–1.00 and 1.0–5.0 mM, respectively. Both biosensors exhibited strong selectivity for UA against other components, including ascorbic acid, glucose, lactic acid, and ethanol. Based on these parameter values, f-MWCNT/AgNi-modified SPCE and fabric-based electrodes can be promoted as biosensors for uric acid detection.

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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
60
审稿时长
49 days
期刊介绍: Sensors and Actuators Reports is a peer-reviewed open access journal launched out from the Sensors and Actuators journal family. Sensors and Actuators Reports is dedicated to publishing new and original works in the field of all type of sensors and actuators, including bio-, chemical-, physical-, and nano- sensors and actuators, which demonstrates significant progress beyond the current state of the art. The journal regularly publishes original research papers, reviews, and short communications. For research papers and short communications, the journal aims to publish the new and original work supported by experimental results and as such purely theoretical works are not accepted.
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