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A highly selective bifunctional nanosensor based on nanocellulose and 3D polypyrrole decorated with silver-gold bimetallic alloy to simultaneously detect methotrexate and ciprofloxacin

聚吡咯 双金属片 热重分析 材料科学 纳米复合材料 热稳定性 循环伏安法 核化学 检出限 高分辨率透射电子显微镜 电化学气体传感器 化学工程 电化学 透射电子显微镜 纳米技术 化学 电极 色谱法 金属 物理化学 冶金 工程类
作者
Shamima Akhter,Md. Shalauddin,Wan Jeffrey Basirun,Vannajan Sanghiran Lee,Syed Rahin Ahmed,Amin Reza Rajabzadeh,Seshasai Srinivasan
出处
期刊:Sensors and Actuators B-chemical [Elsevier BV]
卷期号:373: 132743-132743 被引量:22
标识
DOI:10.1016/j.snb.2022.132743
摘要

An electrochemical sensing platform for the simultaneous detection of methotrexate (MTX) and Ciprofloxacin (CIF) has been presented using nanocellulose and 3dimensional polypyrrole (NC-3DPPY) hybridized silver-gold bimetallic alloy nanoparticle (Ag-Au). The NC-3DPPY composites and Ag-Au bimetallic alloys were prepared by acid hydrolysis and chemical reduction, respectively. The nanocomposite structure of [email protected] was prepared through ultrasonication, and the electrochemical performances of the nanocomposites were elucidated by cyclic voltammetry (CV) and square wave voltammetry (SWV). Field emission scanning electron microscopy (FESEM) and High-resolution transmission electron microscopy (HR-TEM) analysis showed that the as-prepared nanocomposites possess a porous structure, and the nanoparticles are interconnected. The thermogravimetric analysis (TGA) results revealed that the [email protected] nanocomposite has higher thermal stability than NC and NC-3DPPY. The electrocatalytic efficiency of the nanocomposites was evaluated by oxygen evaluation reaction (OER), and the binding interactions between [email protected] with MTX and CIF were studied using a computational technique. At the optimized values of scan rate, pH, and supporting electrolyte conditions, the fabricated sensor demonstrated a broad linear detection ranges of 5–350 µM and 0.5–50 µM, with a low limit of detection (LOD) of 0.062 and 0.017 µM for MTX and CIF, respectively. The proposed simultaneous electrochemical sensor exhibits high stability, excellent reproducibility and selectivity to detect MTX and CIF in the presence of common interfering species. Our study showed excellent analytical performances for trace level detection of MTX and CIF in simulated blood serum, tablets, and water samples with satisfactory recoveries.
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