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Synthesis of porous 2D layered nickel oxide-reduced graphene oxide (NiO-rGO) hybrid composite for the efficient electrochemical detection of epinephrine in biological fluid

石墨烯 非阻塞I/O 氧化物 氧化镍 材料科学 化学工程 循环伏安法 纳米复合材料 电化学气体传感器 电化学 纳米技术 无机化学 分析化学(期刊) 化学 冶金 电极 有机化学 色谱法 催化作用 物理化学 工程类
作者
A.G. Ramu,Ahmad Umar,Ahmed A. Ibrahim,Hassan Algadi,Yousif Ibrahim,Yao Wang,‪Marlia M. Hanafiah‬,Paramasivam Shanmugam,Dongjin Choi
出处
期刊:Environmental Research [Elsevier]
卷期号:200: 111366-111366 被引量:48
标识
DOI:10.1016/j.envres.2021.111366
摘要

In the present research work, 2D-Porous NiO decorated graphene nanocomposite was synthesized by hydrothermal method to monitored the concentration of epinephrine (EPI). The morphology (SEM and TEM) results confirmed 2D-Porous NiO nanoparticles firmly attached over graphene nanosheets. FTIR and XPS analysis confirmed the formation of nickel oxide formation and complete reduction of GO to rGO. The electrochemical activity of the proposed NiO-rGO/GCE modified electrode on epinephrine was analyzed by simple cyclic voltammetry technique. The proposed low cost NiO-rGO/GCE modified electrode showed excellent catalytic activity over GCE and rGO/GCE electrodes. Due to its high conductivity and charge transfer ability of the NiO-rGO/GCE modified electrode exhibited high sensitivity of EPI at optimized conditions. The anodic peak current of the EPI linearly increases with increasing the concertation of EPI. A wide linear range (50 μM–1000 μM) was achieved with high correlation coefficient (R 2 = 0.9986) and the limit of detection (LOD) of NiO-rGO/GCE modified electrode was calculated to be 10 μM. NiO-rGO/GCE electrode showed good stability and repeatability towards the EPI oxidation. Mainly, the proposed NiO-rGO/GCE modified electrode showed good sensitivity of EPI in the human biological fluid with high recovery percentage. The low cost, NiO-rGO/GCE electrode could be the promising sensor electrode for the detection of Epinephrine in the real samples. • 2D-Porous NiO decorated graphene nanocomposite synthesized by the hydrothermal method. • NiO-rGO/GCE modified electrode exhibited high sensitivity of Epinephrine. • A wide linear range (50 μM–1000 μM) was achieved with a high linearity. • NiO-rGO/GCE electrode employed to detect EPI in human serum sample. • NiO-rGO/GCE electrode show high sensitivity of EPI in human serum sample.
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