Synthesis of transition metal titanium oxide (MTiOx, M = Mn, Fe, Cu) and its application in furazolidone electrochemical sensor
Synthesis of transition metal titanium oxide (MTiOx, M = Mn, Fe, Cu) and its application in furazolidone electrochemical sensor
Antolin Jesila Jesu Amalraj(National Taipei University of Technology); Sea-Fue Wang(National Taipei University of Technology)
111권, 356~368쪽
초록
Importance in the precise determination of Furazolidone (FZD) on biological, food, and water sampleswere established for regulating health and nutrition, diagnosis/treatment, pharmacological research,and food/drug quality monitoring. Thus, the sensitive and accurate determination of FZD is necessary. Here, we construct facile and low-cost Metal Titanate (MTiOx, M = Mn, Fe, Cu) as an electrode modifiervia a different one-step synthesis method. By the virtue of unique properties, MnTiO3 has been successfullyemployed in the electrochemical evaluation of FZD such as high active surface area (0.1252 cm2) andhigh electron transfer kinetics with low charge transfer resistance (Rct = 374.65 X) with good electrocatalytickinetic parameters. In this regard, MnTiO3 is employed in the electrochemical evaluation ofFZD through cyclic voltammetry (CV) and Differential Pulse Voltammetry (DPV) techniques. The proposedMnTiO3/GCE sensor shows exquisite electrochemical characteristics including a wide linear range(0.05 to 1101.6 lM), nanomolar detection limit (4.05 nM), and encouraging sensitivity (68.77 lA lM 1cm 2). Moreover, it also exemplifies exquisite selectivity, repeatability, reproducibility, and storage stabilitytherefore; MnTiO3 is employed in the practical feasibility analysis in various real samples, whichshows excellent recovery results.
Abstract
Importance in the precise determination of Furazolidone (FZD) on biological, food, and water sampleswere established for regulating health and nutrition, diagnosis/treatment, pharmacological research,and food/drug quality monitoring. Thus, the sensitive and accurate determination of FZD is necessary. Here, we construct facile and low-cost Metal Titanate (MTiOx, M = Mn, Fe, Cu) as an electrode modifiervia a different one-step synthesis method. By the virtue of unique properties, MnTiO3 has been successfullyemployed in the electrochemical evaluation of FZD such as high active surface area (0.1252 cm2) andhigh electron transfer kinetics with low charge transfer resistance (Rct = 374.65 X) with good electrocatalytickinetic parameters. In this regard, MnTiO3 is employed in the electrochemical evaluation ofFZD through cyclic voltammetry (CV) and Differential Pulse Voltammetry (DPV) techniques. The proposedMnTiO3/GCE sensor shows exquisite electrochemical characteristics including a wide linear range(0.05 to 1101.6 lM), nanomolar detection limit (4.05 nM), and encouraging sensitivity (68.77 lA lM 1cm 2). Moreover, it also exemplifies exquisite selectivity, repeatability, reproducibility, and storage stabilitytherefore; MnTiO3 is employed in the practical feasibility analysis in various real samples, whichshows excellent recovery results.
- 발행기관:
- 한국공업화학회
- 분류:
- 화학공학