4.7 Article

Highly sensitive electrochemical sensor for tyrosine detection using a sub-millimeter electrode

期刊

MICROCHEMICAL JOURNAL
卷 165, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.microc.2021.106106

关键词

Acetylene black; Submillimeter electrode; Electrochemical oxidation; Tyrosine sensor; Reduced graphene oxide

资金

  1. doctoral program construction of Hunan University of technology, National Natural Science Foundation of China [61703152]
  2. Social Development and Transformation of Scientific and Technological Achievements (Zhuzhou Municipal Science and Technology Bureau) [51318, 30]
  3. natural science foundation of Hunan Province [2018JJ34, 2020JJ4149]
  4. Science and Technology Department of Hunan Province [18A273, 18C0522]
  5. Scientific Research Projects of Education Department of Hunan Province [18A336]

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A sub-millimeter paste electrode with an inner diameter of 0.8 mm was prepared by combining rGO and AB, showing better performance in electrochemical behavior compared to a conventional size electrode with a diameter of 3 mm. The electrode exhibited higher sensitivity, a wider linear range, and a lower detection limit for Tyr, making it suitable for analysis in food and biological samples.
In recent years, small-sized electrodes have drawn widespread attraction in electroanalysis due to high sensitivity, rapid response and low cost. Hereby, a sub-millimeter paste electrode with inner diameter of 0.8 mm was prepared by combining the excellent properties of reduced graphene oxide (rGO) and acetylene black (AB), and the electrochemical behavior of tyrosine (Tyr) on the modified electrode (denoted as rGO/ABPE) was investigated in detail. The electrochemical responses obtained on the sub-millimeter rGO/ABPE were compared with that obtained on a conventional size electrode with diameter of 3 mm. The results showed that the 0.8 mm one has better performance than that of 3 mm. Compared with the paste electrode made of graphite powder, the oxidation peak current of Tyr increased significantly due to the synergistic effect of rGO and AB. Under the optimized experimental conditions, the calibration curve of Tyr showed a linear relationship between 0.1 and 100 ?M (R = 0.9995) with good sensitivity of 3.314 ?A ?M-1 cm-2, and the detection limit was 0.06 ?M. By comparison with conventional size electrode, the detection of Tyr on the sub-millimeter electrode shows higher sensitivity, wider linear range and lower detection limit. In addition, the excellent reproducibility, stability and selectivity of the sub-millimeter rGO/ABPE make it suitable for Tyr analysis in both food and biological samples.

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