A Novel Synthesis of Nickel Carbide Modified Glassy Carbon Electrode for Electrochemical Investigation of Archetypal Diabetes Biomarker in Human Serum and Urine Samples

被引:1
|
作者
Kogularasu, Sakthivel [1 ,2 ]
Lee, Yen-Yi [1 ,2 ,3 ]
Chang-Chien, Guo-Ping [1 ,2 ,3 ]
Chen, Pin-Yi [4 ,5 ,6 ]
Govindasamy, Mani [4 ,6 ,7 ]
机构
[1] Cheng Shiu Univ, Super Micro Mass Res & Technol Ctr, Kaohsiung 833301, Taiwan
[2] Cheng Shiu Univ, Ctr Environm Toxin & Emerging Contaminant Res, Kaohsiung 833301, Taiwan
[3] Cheng Shiu Univ, Inst Environm Toxin & Emerging Contaminant Res, Kaohsiung, Taiwan
[4] Ming Chi Univ Technol, Int Ph D Program Innovat Technol Biomed Engn & Med, New Taipei City 24301, Taiwan
[5] Chang Gung Univ, Dept Mech Engn, Taoyuan 33302, Taiwan
[6] Ming Chi Univ Technol, Res Ctr Intelligence Med Devices, New Taipei City, Taiwan
[7] Saveetha Inst Med & Tech Sci SIMATS, Ctr Appl Res, Saveetha Sch Engn, Chennai 602105, Tamil Nadu, India
关键词
nickel carbide nanoplates; electrochemical oxidation; non-enzymatic biosensor; glucose detection; Healthcare analysis; GRAPHENE OXIDE; GLUCOSE; PERFORMANCE; SENSOR; NANOPARTICLES; EVOLUTION; ELECTROCATALYST; DRUG;
D O I
10.1149/1945-7111/ad3a21
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
We began with an exploration of a novel method for non-enzymatic glucose sensing through the direct electrochemical oxidation process using an annealed Nickel carbide (Ni3C) modified glassy carbon electrode (GCE). We cover the synthesis and detailed characterization of Ni3C, the modification process of the electrode, and its application in the electrocatalytic detection of glucose in human blood and urine samples. Ni3C, known for its high charge transfer efficiency, exceptional stability in harsh environments, and outstanding electrochemical activity, was prepared through an annealing method. The produced Ni3C, characterized by a nanoplate structure ranging from 20 to 50 nanometers, was applied to a GCE to benefit from its extensive surface area and structural robustness. Electrochemical impedance spectroscopy and cyclic voltammetry confirmed the superior electrocatalytic properties and charge transfer capabilities of Ni3C/GCE over the unmodified GCE. The glucose detection was achieved by the direct electrochemical oxidation of glucose on the modified electrode, showcasing a linear detection range from 0.05 to 2236 mu M and an impressively low detection limit of 0.0186 mu M. This research underscores the effectiveness of Ni3C/GCE as durable, efficient, and reliable tools for the non-enzymatic electrochemical sensing of glucose, providing new prospects for diabetes monitoring.
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页数:8
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