2022
DOI: 10.3390/s22228744
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Glyphosate Sensor Based on Nanostructured Water-Gated CuO Field-Effect Transistor

Abstract: This research presents a comparative analysis of water-gated thin film transistors based on a copper oxide (CuO) semiconductor in the form of a smooth film and a nanostructured surface. A smooth CuO film was deposited through reactive magnetron sputtering followed by annealing in atmosphere at a temperature of 280 ∘C. Copper oxide nanostructures were obtained by hydrothermal synthesis on a preliminary magnetron sputtered 2 nm thick CuO precursor followed by annealing at 280 ∘C. An X-ray diffraction (XRD) analy… Show more

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Cited by 3 publications
(1 citation statement)
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“…Owing to their strong electrocatalytic activity, low price, high organic catching aptitude, reduced dimension, large surface-to-volume ratio, and high degree of crystalline nature, metal oxide nanocomposites have been extensively employed and are already established as an active electrocatalyst for sensing various emergent biomarkers [1][2][3]. Typically, the electrocatalytic properties of the metal oxide nanocomposites are closely related to the active sites, electrochemical active surface area, surface energy, etc.…”
Section: Introductionmentioning
confidence: 99%
“…Owing to their strong electrocatalytic activity, low price, high organic catching aptitude, reduced dimension, large surface-to-volume ratio, and high degree of crystalline nature, metal oxide nanocomposites have been extensively employed and are already established as an active electrocatalyst for sensing various emergent biomarkers [1][2][3]. Typically, the electrocatalytic properties of the metal oxide nanocomposites are closely related to the active sites, electrochemical active surface area, surface energy, etc.…”
Section: Introductionmentioning
confidence: 99%